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class="tag is-small is-grey tooltip is-tooltip-top" data-tooltip="High Energy Physics - Experiment">hep-ex</span> </div> </div> <p class="title is-5 mathjax"> First results on monolithic CMOS detector with internal gain </p> <p class="authors"> <span class="search-hit">Authors:</span> <a href="/search/physics?searchtype=author&amp;query=Follo%2C+U">U. Follo</a>, <a href="/search/physics?searchtype=author&amp;query=Gioachin%2C+G">G. Gioachin</a>, <a href="/search/physics?searchtype=author&amp;query=Ferrero%2C+C">C. Ferrero</a>, <a href="/search/physics?searchtype=author&amp;query=Mandurrino%2C+M">M. Mandurrino</a>, <a href="/search/physics?searchtype=author&amp;query=Bregant%2C+M">M. Bregant</a>, <a href="/search/physics?searchtype=author&amp;query=Bufalino%2C+S">S. Bufalino</a>, <a href="/search/physics?searchtype=author&amp;query=Carnesecchi%2C+F">F. Carnesecchi</a>, <a href="/search/physics?searchtype=author&amp;query=Cavazza%2C+D">D. Cavazza</a>, <a href="/search/physics?searchtype=author&amp;query=Colocci%2C+M">M. Colocci</a>, <a href="/search/physics?searchtype=author&amp;query=Corradino%2C+T">T. Corradino</a>, <a href="/search/physics?searchtype=author&amp;query=Rolo%2C+M+D+R">M. Da Rocha Rolo</a>, <a href="/search/physics?searchtype=author&amp;query=Di+Nicolantonio%2C+G">G. Di Nicolantonio</a>, <a href="/search/physics?searchtype=author&amp;query=Durando%2C+S">S. Durando</a>, <a href="/search/physics?searchtype=author&amp;query=Margutti%2C+G">G. Margutti</a>, <a href="/search/physics?searchtype=author&amp;query=Mignone%2C+M">M. Mignone</a>, <a href="/search/physics?searchtype=author&amp;query=Nania%2C+R">R. Nania</a>, <a href="/search/physics?searchtype=author&amp;query=Pancheri%2C+L">L. Pancheri</a>, <a href="/search/physics?searchtype=author&amp;query=Rivetti%2C+A">A. Rivetti</a>, <a href="/search/physics?searchtype=author&amp;query=Sabiu%2C+B">B. Sabiu</a>, <a href="/search/physics?searchtype=author&amp;query=de+Souza%2C+G+G+A">G. G. A. de Souza</a>, <a href="/search/physics?searchtype=author&amp;query=Strazzi%2C+S">S. Strazzi</a>, <a href="/search/physics?searchtype=author&amp;query=Wheadon%2C+R">R. Wheadon</a> </p> <p class="abstract mathjax"> <span class="has-text-black-bis has-text-weight-semibold">Abstract</span>: <span class="abstract-short has-text-grey-dark mathjax" id="2406.19906v1-abstract-short" style="display: inline;"> In this paper we report on a set of characterisations carried out on the first monolithic LGAD prototype integrated in a customised 110 nm CMOS process having a depleted active volume thickness of 48 $渭$m. This prototype is formed by a pixel array where each pixel has a total size of 100 $渭$m $\times$ 250 $渭$m and includes a high-speed front-end amplifier. After describing the sensor and the elect&hellip; <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('2406.19906v1-abstract-full').style.display = 'inline'; document.getElementById('2406.19906v1-abstract-short').style.display = 'none';">&#9661; More</a> </span> <span class="abstract-full has-text-grey-dark mathjax" id="2406.19906v1-abstract-full" style="display: none;"> In this paper we report on a set of characterisations carried out on the first monolithic LGAD prototype integrated in a customised 110 nm CMOS process having a depleted active volume thickness of 48 $渭$m. This prototype is formed by a pixel array where each pixel has a total size of 100 $渭$m $\times$ 250 $渭$m and includes a high-speed front-end amplifier. After describing the sensor and the electronics architecture, both laboratory and in-beam measurements are reported and described. Optical characterisations performed with an IR pulsed laser setup have shown a sensor internal gain of about 2.5. With the same experimental setup, the electronic jitter was found to be between 50 ps and 150 ps, depending on the signal amplitude. Moreover, the analysis of a test beam performed at the Proton Synchrotron (PS) T10 facility of CERN with 10 GeV/c protons and pions indicated that the overall detector time resolution is in the range of 234 ps to 244 ps. Further TCAD investigations, based on the doping profile extracted from $C(V)$ measurements, confirmed the multiplication gain measured on the test devices. Finally, TCAD simulations were used to tune the future doping concentration of the gain layer implant, targeting sensors with a higher avalanche gain. This adjustment is expected to enhance the timing performance of the sensors of the future productions, in order to cope with the high event rate expected in most of the near future high-energy and high-luminosity physics experiments, where the time resolution will be essential to disentangle overlapping events and it will also be crucial for Particle IDentification (PID). <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('2406.19906v1-abstract-full').style.display = 'none'; document.getElementById('2406.19906v1-abstract-short').style.display = 'inline';">&#9651; Less</a> </span> </p> <p class="is-size-7"><span class="has-text-black-bis has-text-weight-semibold">Submitted</span> 28 June, 2024; <span class="has-text-black-bis has-text-weight-semibold">originally announced</span> June 2024. </p> </li> <li class="arxiv-result"> <div class="is-marginless"> <p class="list-title is-inline-block"><a href="https://arxiv.org/abs/2212.14452">arXiv:2212.14452</a> <span>&nbsp;[<a href="https://arxiv.org/pdf/2212.14452">pdf</a>, <a href="https://arxiv.org/format/2212.14452">other</a>]&nbsp;</span> </p> <div class="tags is-inline-block"> <span class="tag is-small is-link tooltip is-tooltip-top" data-tooltip="Nuclear Experiment">nucl-ex</span> <span class="tag is-small is-grey tooltip is-tooltip-top" data-tooltip="Instrumentation and Detectors">physics.ins-det</span> </div> </div> <p class="title is-5 mathjax"> Letter of Intent: the NA60+ experiment </p> <p class="authors"> <span class="search-hit">Authors:</span> <a href="/search/physics?searchtype=author&amp;query=Ahdida%2C+C">C. Ahdida</a>, <a href="/search/physics?searchtype=author&amp;query=Alocco%2C+G">G. Alocco</a>, <a href="/search/physics?searchtype=author&amp;query=Antinori%2C+F">F. Antinori</a>, <a href="/search/physics?searchtype=author&amp;query=Arba%2C+M">M. Arba</a>, <a href="/search/physics?searchtype=author&amp;query=Aresti%2C+M">M. Aresti</a>, <a href="/search/physics?searchtype=author&amp;query=Arnaldi%2C+R">R. Arnaldi</a>, <a href="/search/physics?searchtype=author&amp;query=Roldan%2C+A+B">A. Baratto Roldan</a>, <a href="/search/physics?searchtype=author&amp;query=Beole%2C+S">S. Beole</a>, <a href="/search/physics?searchtype=author&amp;query=Beraudo%2C+A">A. Beraudo</a>, <a href="/search/physics?searchtype=author&amp;query=Bernhard%2C+J">J. Bernhard</a>, <a href="/search/physics?searchtype=author&amp;query=Bianchi%2C+L">L. Bianchi</a>, <a href="/search/physics?searchtype=author&amp;query=Borysova%2C+M">M. Borysova</a>, <a href="/search/physics?searchtype=author&amp;query=Bressler%2C+S">S. Bressler</a>, <a href="/search/physics?searchtype=author&amp;query=Bufalino%2C+S">S. Bufalino</a>, <a href="/search/physics?searchtype=author&amp;query=Casula%2C+E">E. Casula</a>, <a href="/search/physics?searchtype=author&amp;query=Cicalo%2C+C">C. Cicalo</a>, <a href="/search/physics?searchtype=author&amp;query=Coli%2C+S">S. Coli</a>, <a href="/search/physics?searchtype=author&amp;query=Cortese%2C+P">P. Cortese</a>, <a href="/search/physics?searchtype=author&amp;query=Dainese%2C+A">A. Dainese</a>, <a href="/search/physics?searchtype=author&amp;query=Danielsson%2C+H">H. Danielsson</a>, <a href="/search/physics?searchtype=author&amp;query=De+Falco%2C+A">A. De Falco</a>, <a href="/search/physics?searchtype=author&amp;query=Dehmelt%2C+K">K. Dehmelt</a>, <a href="/search/physics?searchtype=author&amp;query=Drees%2C+A">A. Drees</a>, <a href="/search/physics?searchtype=author&amp;query=Ferretti%2C+A">A. Ferretti</a>, <a href="/search/physics?searchtype=author&amp;query=Fionda%2C+F">F. Fionda</a> , et al. (37 additional authors not shown) </p> <p class="abstract mathjax"> <span class="has-text-black-bis has-text-weight-semibold">Abstract</span>: <span class="abstract-short has-text-grey-dark mathjax" id="2212.14452v1-abstract-short" style="display: inline;"> We propose a new fixed-target experiment for the study of electromagnetic and hard probes of the Quark-Gluon Plasma (QGP) in heavy-ion collisions at the CERN SPS. The experiment aims at performing measurements of the dimuon spectrum from threshold up to the charmonium region, and of hadronic decays of charm and strange hadrons. It is based on a muon spectrometer, which includes a toroidal magnet a&hellip; <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('2212.14452v1-abstract-full').style.display = 'inline'; document.getElementById('2212.14452v1-abstract-short').style.display = 'none';">&#9661; More</a> </span> <span class="abstract-full has-text-grey-dark mathjax" id="2212.14452v1-abstract-full" style="display: none;"> We propose a new fixed-target experiment for the study of electromagnetic and hard probes of the Quark-Gluon Plasma (QGP) in heavy-ion collisions at the CERN SPS. The experiment aims at performing measurements of the dimuon spectrum from threshold up to the charmonium region, and of hadronic decays of charm and strange hadrons. It is based on a muon spectrometer, which includes a toroidal magnet and six planes of tracking detectors, coupled to a vertex spectrometer, equipped with Si MAPS immersed in a dipole field. High luminosity is an essential requirement for the experiment, with the goal of taking data with 10$^6$ incident ions/s, at collision energies ranging from $\sqrt{s_{\rm NN}} = 6.3$ GeV ($E_{\rm lab}= 20$ A GeV) to top SPS energy ($\sqrt{s_{\rm NN}} = 17.3$ GeV, $E_{\rm lab}= 158$ A GeV). This document presents the physics motivation, the foreseen experimental set-up including integration and radioprotection studies, the current detector choices together with the status of the corresponding R&amp;D, and the outcome of physics performance studies. A preliminary cost evaluation is also carried out. <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('2212.14452v1-abstract-full').style.display = 'none'; document.getElementById('2212.14452v1-abstract-short').style.display = 'inline';">&#9651; Less</a> </span> </p> <p class="is-size-7"><span class="has-text-black-bis has-text-weight-semibold">Submitted</span> 29 December, 2022; <span class="has-text-black-bis has-text-weight-semibold">originally announced</span> December 2022. </p> <p class="comments is-size-7"> <span class="has-text-black-bis has-text-weight-semibold">Comments:</span> <span class="has-text-grey-dark mathjax">Letter of Intent submitted to the CERN SPSC</span> </p> <p class="comments is-size-7"> <span class="has-text-black-bis has-text-weight-semibold">Report number:</span> CERN-SPSC-2022-036 / SPSC-I-259 </p> </li> <li class="arxiv-result"> <div class="is-marginless"> <p class="list-title is-inline-block"><a href="https://arxiv.org/abs/2105.13000">arXiv:2105.13000</a> <span>&nbsp;[<a href="https://arxiv.org/pdf/2105.13000">pdf</a>, <a href="https://arxiv.org/format/2105.13000">other</a>]&nbsp;</span> </p> <div class="tags is-inline-block"> <span class="tag is-small is-link tooltip is-tooltip-top" data-tooltip="Instrumentation and Detectors">physics.ins-det</span> </div> </div> <p class="title is-5 mathjax"> First demonstration of in-beam performance of bent Monolithic Active Pixel Sensors </p> <p class="authors"> <span class="search-hit">Authors:</span> <a href="/search/physics?searchtype=author&amp;query=project%2C+A+I">ALICE ITS project</a>, <a href="/search/physics?searchtype=author&amp;query=%3A"> :</a>, <a href="/search/physics?searchtype=author&amp;query=Rinella%2C+G+A">G. Aglieri Rinella</a>, <a href="/search/physics?searchtype=author&amp;query=Agnello%2C+M">M. Agnello</a>, <a href="/search/physics?searchtype=author&amp;query=Alessandro%2C+B">B. Alessandro</a>, <a href="/search/physics?searchtype=author&amp;query=Agnese%2C+F">F. Agnese</a>, <a href="/search/physics?searchtype=author&amp;query=Akram%2C+R+S">R. S. Akram</a>, <a href="/search/physics?searchtype=author&amp;query=Alme%2C+J">J. Alme</a>, <a href="/search/physics?searchtype=author&amp;query=Anderssen%2C+E">E. Anderssen</a>, <a href="/search/physics?searchtype=author&amp;query=Andreou%2C+D">D. Andreou</a>, <a href="/search/physics?searchtype=author&amp;query=Antinori%2C+F">F. Antinori</a>, <a href="/search/physics?searchtype=author&amp;query=Apadula%2C+N">N. Apadula</a>, <a href="/search/physics?searchtype=author&amp;query=Atkinson%2C+P">P. Atkinson</a>, <a href="/search/physics?searchtype=author&amp;query=Baccomi%2C+R">R. Baccomi</a>, <a href="/search/physics?searchtype=author&amp;query=Badal%C3%A0%2C+A">A. Badal脿</a>, <a href="/search/physics?searchtype=author&amp;query=Balbino%2C+A">A. Balbino</a>, <a href="/search/physics?searchtype=author&amp;query=Bartels%2C+C">C. Bartels</a>, <a href="/search/physics?searchtype=author&amp;query=Barthel%2C+R">R. Barthel</a>, <a href="/search/physics?searchtype=author&amp;query=Baruffaldi%2C+F">F. Baruffaldi</a>, <a href="/search/physics?searchtype=author&amp;query=Belikov%2C+I">I. Belikov</a>, <a href="/search/physics?searchtype=author&amp;query=Beole%2C+S">S. Beole</a>, <a href="/search/physics?searchtype=author&amp;query=Becht%2C+P">P. Becht</a>, <a href="/search/physics?searchtype=author&amp;query=Bhatti%2C+A">A. Bhatti</a>, <a href="/search/physics?searchtype=author&amp;query=Bhopal%2C+M">M. Bhopal</a>, <a href="/search/physics?searchtype=author&amp;query=Bianchi%2C+N">N. Bianchi</a> , et al. (230 additional authors not shown) </p> <p class="abstract mathjax"> <span class="has-text-black-bis has-text-weight-semibold">Abstract</span>: <span class="abstract-short has-text-grey-dark mathjax" id="2105.13000v2-abstract-short" style="display: inline;"> A novel approach for designing the next generation of vertex detectors foresees to employ wafer-scale sensors that can be bent to truly cylindrical geometries after thinning them to thicknesses of 20-40$渭$m. To solidify this concept, the feasibility of operating bent MAPS was demonstrated using 1.5$\times$3cm ALPIDE chips. Already with their thickness of 50$渭$m, they can be successfully bent to ra&hellip; <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('2105.13000v2-abstract-full').style.display = 'inline'; document.getElementById('2105.13000v2-abstract-short').style.display = 'none';">&#9661; More</a> </span> <span class="abstract-full has-text-grey-dark mathjax" id="2105.13000v2-abstract-full" style="display: none;"> A novel approach for designing the next generation of vertex detectors foresees to employ wafer-scale sensors that can be bent to truly cylindrical geometries after thinning them to thicknesses of 20-40$渭$m. To solidify this concept, the feasibility of operating bent MAPS was demonstrated using 1.5$\times$3cm ALPIDE chips. Already with their thickness of 50$渭$m, they can be successfully bent to radii of about 2cm without any signs of mechanical or electrical damage. During a subsequent characterisation using a 5.4GeV electron beam, it was further confirmed that they preserve their full electrical functionality as well as particle detection performance. In this article, the bending procedure and the setup used for characterisation are detailed. Furthermore, the analysis of the beam test, including the measurement of the detection efficiency as a function of beam position and local inclination angle, is discussed. The results show that the sensors maintain their excellent performance after bending to radii of 2cm, with detection efficiencies above 99.9% at typical operating conditions, paving the way towards a new class of detectors with unprecedented low material budget and ideal geometrical properties. <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('2105.13000v2-abstract-full').style.display = 'none'; document.getElementById('2105.13000v2-abstract-short').style.display = 'inline';">&#9651; Less</a> </span> </p> <p class="is-size-7"><span class="has-text-black-bis has-text-weight-semibold">Submitted</span> 17 August, 2021; <span class="has-text-black-bis has-text-weight-semibold">v1</span> submitted 27 May, 2021; <span class="has-text-black-bis has-text-weight-semibold">originally announced</span> May 2021. </p> </li> <li class="arxiv-result"> <div class="is-marginless"> <p class="list-title is-inline-block"><a href="https://arxiv.org/abs/2103.05419">arXiv:2103.05419</a> <span>&nbsp;[<a href="https://arxiv.org/pdf/2103.05419">pdf</a>, <a href="https://arxiv.org/format/2103.05419">other</a>]&nbsp;</span> </p> <div class="tags is-inline-block"> <span class="tag is-small is-link tooltip is-tooltip-top" data-tooltip="Instrumentation and Detectors">physics.ins-det</span> <span class="tag is-small is-grey tooltip is-tooltip-top" data-tooltip="High Energy Physics - Experiment">hep-ex</span> <span class="tag is-small is-grey tooltip is-tooltip-top" data-tooltip="High Energy Physics - Phenomenology">hep-ph</span> <span class="tag is-small is-grey tooltip is-tooltip-top" data-tooltip="Nuclear Experiment">nucl-ex</span> <span class="tag is-small is-grey tooltip is-tooltip-top" data-tooltip="Nuclear Theory">nucl-th</span> </div> <div class="is-inline-block" style="margin-left: 0.5rem"> <div class="tags has-addons"> <span class="tag is-dark is-size-7">doi</span> <span class="tag is-light is-size-7"><a class="" href="https://doi.org/10.1016/j.nuclphysa.2022.122447">10.1016/j.nuclphysa.2022.122447 <i class="fa fa-external-link" aria-hidden="true"></i></a></span> </div> </div> </div> <p class="title is-5 mathjax"> Science Requirements and Detector Concepts for the Electron-Ion Collider: EIC Yellow Report </p> <p class="authors"> <span class="search-hit">Authors:</span> <a href="/search/physics?searchtype=author&amp;query=Khalek%2C+R+A">R. Abdul Khalek</a>, <a href="/search/physics?searchtype=author&amp;query=Accardi%2C+A">A. Accardi</a>, <a href="/search/physics?searchtype=author&amp;query=Adam%2C+J">J. Adam</a>, <a href="/search/physics?searchtype=author&amp;query=Adamiak%2C+D">D. Adamiak</a>, <a href="/search/physics?searchtype=author&amp;query=Akers%2C+W">W. Akers</a>, <a href="/search/physics?searchtype=author&amp;query=Albaladejo%2C+M">M. Albaladejo</a>, <a href="/search/physics?searchtype=author&amp;query=Al-bataineh%2C+A">A. Al-bataineh</a>, <a href="/search/physics?searchtype=author&amp;query=Alexeev%2C+M+G">M. G. Alexeev</a>, <a href="/search/physics?searchtype=author&amp;query=Ameli%2C+F">F. Ameli</a>, <a href="/search/physics?searchtype=author&amp;query=Antonioli%2C+P">P. Antonioli</a>, <a href="/search/physics?searchtype=author&amp;query=Armesto%2C+N">N. Armesto</a>, <a href="/search/physics?searchtype=author&amp;query=Armstrong%2C+W+R">W. R. Armstrong</a>, <a href="/search/physics?searchtype=author&amp;query=Arratia%2C+M">M. Arratia</a>, <a href="/search/physics?searchtype=author&amp;query=Arrington%2C+J">J. Arrington</a>, <a href="/search/physics?searchtype=author&amp;query=Asaturyan%2C+A">A. Asaturyan</a>, <a href="/search/physics?searchtype=author&amp;query=Asai%2C+M">M. Asai</a>, <a href="/search/physics?searchtype=author&amp;query=Aschenauer%2C+E+C">E. C. Aschenauer</a>, <a href="/search/physics?searchtype=author&amp;query=Aune%2C+S">S. Aune</a>, <a href="/search/physics?searchtype=author&amp;query=Avagyan%2C+H">H. Avagyan</a>, <a href="/search/physics?searchtype=author&amp;query=Gayoso%2C+C+A">C. Ayerbe Gayoso</a>, <a href="/search/physics?searchtype=author&amp;query=Azmoun%2C+B">B. Azmoun</a>, <a href="/search/physics?searchtype=author&amp;query=Bacchetta%2C+A">A. Bacchetta</a>, <a href="/search/physics?searchtype=author&amp;query=Baker%2C+M+D">M. D. Baker</a>, <a href="/search/physics?searchtype=author&amp;query=Barbosa%2C+F">F. Barbosa</a>, <a href="/search/physics?searchtype=author&amp;query=Barion%2C+L">L. Barion</a> , et al. (390 additional authors not shown) </p> <p class="abstract mathjax"> <span class="has-text-black-bis has-text-weight-semibold">Abstract</span>: <span class="abstract-short has-text-grey-dark mathjax" id="2103.05419v3-abstract-short" style="display: inline;"> This report describes the physics case, the resulting detector requirements, and the evolving detector concepts for the experimental program at the Electron-Ion Collider (EIC). The EIC will be a powerful new high-luminosity facility in the United States with the capability to collide high-energy electron beams with high-energy proton and ion beams, providing access to those regions in the nucleon&hellip; <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('2103.05419v3-abstract-full').style.display = 'inline'; document.getElementById('2103.05419v3-abstract-short').style.display = 'none';">&#9661; More</a> </span> <span class="abstract-full has-text-grey-dark mathjax" id="2103.05419v3-abstract-full" style="display: none;"> This report describes the physics case, the resulting detector requirements, and the evolving detector concepts for the experimental program at the Electron-Ion Collider (EIC). The EIC will be a powerful new high-luminosity facility in the United States with the capability to collide high-energy electron beams with high-energy proton and ion beams, providing access to those regions in the nucleon and nuclei where their structure is dominated by gluons. Moreover, polarized beams in the EIC will give unprecedented access to the spatial and spin structure of the proton, neutron, and light ions. The studies leading to this document were commissioned and organized by the EIC User Group with the objective of advancing the state and detail of the physics program and developing detector concepts that meet the emerging requirements in preparation for the realization of the EIC. The effort aims to provide the basis for further development of concepts for experimental equipment best suited for the science needs, including the importance of two complementary detectors and interaction regions. This report consists of three volumes. Volume I is an executive summary of our findings and developed concepts. In Volume II we describe studies of a wide range of physics measurements and the emerging requirements on detector acceptance and performance. Volume III discusses general-purpose detector concepts and the underlying technologies to meet the physics requirements. These considerations will form the basis for a world-class experimental program that aims to increase our understanding of the fundamental structure of all visible matter <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('2103.05419v3-abstract-full').style.display = 'none'; document.getElementById('2103.05419v3-abstract-short').style.display = 'inline';">&#9651; Less</a> </span> </p> <p class="is-size-7"><span class="has-text-black-bis has-text-weight-semibold">Submitted</span> 26 October, 2021; <span class="has-text-black-bis has-text-weight-semibold">v1</span> submitted 8 March, 2021; <span class="has-text-black-bis has-text-weight-semibold">originally announced</span> March 2021. </p> <p class="comments is-size-7"> <span class="has-text-black-bis has-text-weight-semibold">Comments:</span> <span class="has-text-grey-dark mathjax">902 pages, 415 authors, 151 institutions</span> </p> <p class="comments is-size-7"> <span class="has-text-black-bis has-text-weight-semibold">Report number:</span> BNL-220990-2021-FORE, JLAB-PHY-21-3198, LA-UR-21-20953 </p> <p class="comments is-size-7"> <span class="has-text-black-bis has-text-weight-semibold">Journal ref:</span> Nucl. Phys. A 1026 (2022) 122447 </p> </li> <li class="arxiv-result"> <div class="is-marginless"> <p class="list-title is-inline-block"><a href="https://arxiv.org/abs/1902.01211">arXiv:1902.01211</a> <span>&nbsp;[<a href="https://arxiv.org/pdf/1902.01211">pdf</a>, <a href="https://arxiv.org/format/1902.01211">other</a>]&nbsp;</span> </p> <div class="tags is-inline-block"> <span class="tag is-small is-link tooltip is-tooltip-top" data-tooltip="Instrumentation and Detectors">physics.ins-det</span> <span class="tag is-small is-grey tooltip is-tooltip-top" data-tooltip="High Energy Physics - Experiment">hep-ex</span> <span class="tag is-small is-grey tooltip is-tooltip-top" data-tooltip="Nuclear Experiment">nucl-ex</span> <span class="tag is-small is-grey tooltip is-tooltip-top" data-tooltip="Nuclear Theory">nucl-th</span> </div> </div> <p class="title is-5 mathjax"> A next-generation LHC heavy-ion experiment </p> <p class="authors"> <span class="search-hit">Authors:</span> <a href="/search/physics?searchtype=author&amp;query=Adamov%C3%A1%2C+D">D. Adamov谩</a>, <a href="/search/physics?searchtype=author&amp;query=Rinella%2C+G+A">G. Aglieri Rinella</a>, <a href="/search/physics?searchtype=author&amp;query=Agnello%2C+M">M. Agnello</a>, <a href="/search/physics?searchtype=author&amp;query=Ahammed%2C+Z">Z. Ahammed</a>, <a href="/search/physics?searchtype=author&amp;query=Aleksandrov%2C+D">D. Aleksandrov</a>, <a href="/search/physics?searchtype=author&amp;query=Alici%2C+A">A. Alici</a>, <a href="/search/physics?searchtype=author&amp;query=Alkin%2C+A">A. Alkin</a>, <a href="/search/physics?searchtype=author&amp;query=Alt%2C+T">T. Alt</a>, <a href="/search/physics?searchtype=author&amp;query=Altsybeev%2C+I">I. Altsybeev</a>, <a href="/search/physics?searchtype=author&amp;query=Andreou%2C+D">D. Andreou</a>, <a href="/search/physics?searchtype=author&amp;query=Andronic%2C+A">A. Andronic</a>, <a href="/search/physics?searchtype=author&amp;query=Antinori%2C+F">F. Antinori</a>, <a href="/search/physics?searchtype=author&amp;query=Antonioli%2C+P">P. Antonioli</a>, <a href="/search/physics?searchtype=author&amp;query=Appelsh%C3%A4user%2C+H">H. Appelsh盲user</a>, <a href="/search/physics?searchtype=author&amp;query=Arnaldi%2C+R">R. Arnaldi</a>, <a href="/search/physics?searchtype=author&amp;query=Arsene%2C+I+C">I. C. Arsene</a>, <a href="/search/physics?searchtype=author&amp;query=Arslandok%2C+M">M. Arslandok</a>, <a href="/search/physics?searchtype=author&amp;query=Averbeck%2C+R">R. Averbeck</a>, <a href="/search/physics?searchtype=author&amp;query=Azmi%2C+M+D">M. D. Azmi</a>, <a href="/search/physics?searchtype=author&amp;query=Bai%2C+X">X. Bai</a>, <a href="/search/physics?searchtype=author&amp;query=Bailhache%2C+R">R. Bailhache</a>, <a href="/search/physics?searchtype=author&amp;query=Bala%2C+R">R. Bala</a>, <a href="/search/physics?searchtype=author&amp;query=Barioglio%2C+L">L. Barioglio</a>, <a href="/search/physics?searchtype=author&amp;query=Barnaf%C3%B6ldi%2C+G+G">G. G. Barnaf枚ldi</a>, <a href="/search/physics?searchtype=author&amp;query=Barnby%2C+L+S">L. S. Barnby</a> , et al. (374 additional authors not shown) </p> <p class="abstract mathjax"> <span class="has-text-black-bis has-text-weight-semibold">Abstract</span>: <span class="abstract-short has-text-grey-dark mathjax" id="1902.01211v2-abstract-short" style="display: inline;"> The present document discusses plans for a compact, next-generation multi-purpose detector at the LHC as a follow-up to the present ALICE experiment. The aim is to build a nearly massless barrel detector consisting of truly cylindrical layers based on curved wafer-scale ultra-thin silicon sensors with MAPS technology, featuring an unprecedented low material budget of 0.05% X$_0$ per layer, with th&hellip; <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('1902.01211v2-abstract-full').style.display = 'inline'; document.getElementById('1902.01211v2-abstract-short').style.display = 'none';">&#9661; More</a> </span> <span class="abstract-full has-text-grey-dark mathjax" id="1902.01211v2-abstract-full" style="display: none;"> The present document discusses plans for a compact, next-generation multi-purpose detector at the LHC as a follow-up to the present ALICE experiment. The aim is to build a nearly massless barrel detector consisting of truly cylindrical layers based on curved wafer-scale ultra-thin silicon sensors with MAPS technology, featuring an unprecedented low material budget of 0.05% X$_0$ per layer, with the innermost layers possibly positioned inside the beam pipe. In addition to superior tracking and vertexing capabilities over a wide momentum range down to a few tens of MeV/$c$, the detector will provide particle identification via time-of-flight determination with about 20~ps resolution. In addition, electron and photon identification will be performed in a separate shower detector. The proposed detector is conceived for studies of pp, pA and AA collisions at luminosities a factor of 20 to 50 times higher than possible with the upgraded ALICE detector, enabling a rich physics program ranging from measurements with electromagnetic probes at ultra-low transverse momenta to precision physics in the charm and beauty sector. <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('1902.01211v2-abstract-full').style.display = 'none'; document.getElementById('1902.01211v2-abstract-short').style.display = 'inline';">&#9651; Less</a> </span> </p> <p class="is-size-7"><span class="has-text-black-bis has-text-weight-semibold">Submitted</span> 2 May, 2019; <span class="has-text-black-bis has-text-weight-semibold">v1</span> submitted 31 January, 2019; <span class="has-text-black-bis has-text-weight-semibold">originally announced</span> February 2019. </p> <p class="comments is-size-7"> <span class="has-text-black-bis has-text-weight-semibold">Comments:</span> <span class="has-text-grey-dark mathjax">Input to the 2020 Update of the European Particle Physics Strategy</span> </p> </li> <li class="arxiv-result"> <div class="is-marginless"> <p class="list-title is-inline-block"><a href="https://arxiv.org/abs/0907.0169">arXiv:0907.0169</a> <span>&nbsp;[<a href="https://arxiv.org/pdf/0907.0169">pdf</a>, <a href="https://arxiv.org/format/0907.0169">other</a>]&nbsp;</span> </p> <div class="tags is-inline-block"> <span class="tag is-small is-link tooltip is-tooltip-top" data-tooltip="Instrumentation and Detectors">physics.ins-det</span> <span class="tag is-small is-grey tooltip is-tooltip-top" data-tooltip="High Energy Physics - Experiment">hep-ex</span> </div> </div> <p class="title is-5 mathjax"> Technical Design Report for the PANDA Solenoid and Dipole Spectrometer Magnets </p> <p class="authors"> <span class="search-hit">Authors:</span> <a href="/search/physics?searchtype=author&amp;query=The+PANDA+Collaboration"> The PANDA Collaboration</a>, <a href="/search/physics?searchtype=author&amp;query=Erni%2C+W">W. Erni</a>, <a href="/search/physics?searchtype=author&amp;query=Keshelashvili%2C+I">I. Keshelashvili</a>, <a href="/search/physics?searchtype=author&amp;query=Krusche%2C+B">B. Krusche</a>, <a href="/search/physics?searchtype=author&amp;query=Steinacher%2C+M">M. Steinacher</a>, <a href="/search/physics?searchtype=author&amp;query=Heng%2C+Y">Y. Heng</a>, <a href="/search/physics?searchtype=author&amp;query=Liu%2C+Z">Z. Liu</a>, <a href="/search/physics?searchtype=author&amp;query=Liu%2C+H">H. Liu</a>, <a href="/search/physics?searchtype=author&amp;query=Shen%2C+X">X. Shen</a>, <a href="/search/physics?searchtype=author&amp;query=Wang%2C+O">O. Wang</a>, <a href="/search/physics?searchtype=author&amp;query=Xu%2C+H">H. Xu</a>, <a href="/search/physics?searchtype=author&amp;query=Becker%2C+J">J. Becker</a>, <a href="/search/physics?searchtype=author&amp;query=Feldbauer%2C+F">F. Feldbauer</a>, <a href="/search/physics?searchtype=author&amp;query=Heinsius%2C+F+-">F. -H. Heinsius</a>, <a href="/search/physics?searchtype=author&amp;query=Held%2C+T">T. Held</a>, <a href="/search/physics?searchtype=author&amp;query=Koch%2C+H">H. Koch</a>, <a href="/search/physics?searchtype=author&amp;query=Kopf%2C+B">B. Kopf</a>, <a href="/search/physics?searchtype=author&amp;query=Pelizaeus%2C+M">M. Pelizaeus</a>, <a href="/search/physics?searchtype=author&amp;query=Schroeder%2C+T">T. Schroeder</a>, <a href="/search/physics?searchtype=author&amp;query=Steinke%2C+M">M. Steinke</a>, <a href="/search/physics?searchtype=author&amp;query=Wiedner%2C+U">U. Wiedner</a>, <a href="/search/physics?searchtype=author&amp;query=Zhong%2C+J">J. Zhong</a>, <a href="/search/physics?searchtype=author&amp;query=Bianconi%2C+A">A. Bianconi</a>, <a href="/search/physics?searchtype=author&amp;query=Bragadireanu%2C+M">M. Bragadireanu</a>, <a href="/search/physics?searchtype=author&amp;query=Pantea%2C+D">D. Pantea</a> , et al. (387 additional authors not shown) </p> <p class="abstract mathjax"> <span class="has-text-black-bis has-text-weight-semibold">Abstract</span>: <span class="abstract-short has-text-grey-dark mathjax" id="0907.0169v1-abstract-short" style="display: inline;"> This document is the Technical Design Report covering the two large spectrometer magnets of the PANDA detector set-up. It shows the conceptual design of the magnets and their anticipated performance. It precedes the tender and procurement of the magnets and, hence, is subject to possible modifications arising during this process. </span> <span class="abstract-full has-text-grey-dark mathjax" id="0907.0169v1-abstract-full" style="display: none;"> This document is the Technical Design Report covering the two large spectrometer magnets of the PANDA detector set-up. It shows the conceptual design of the magnets and their anticipated performance. It precedes the tender and procurement of the magnets and, hence, is subject to possible modifications arising during this process. <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('0907.0169v1-abstract-full').style.display = 'none'; document.getElementById('0907.0169v1-abstract-short').style.display = 'inline';">&#9651; Less</a> </span> </p> <p class="is-size-7"><span class="has-text-black-bis has-text-weight-semibold">Submitted</span> 1 July, 2009; <span class="has-text-black-bis has-text-weight-semibold">originally announced</span> July 2009. </p> <p class="comments is-size-7"> <span class="has-text-black-bis has-text-weight-semibold">Comments:</span> <span class="has-text-grey-dark mathjax">10 pages, 14MB, accepted by FAIR STI in May 2009, editors: Inti Lehmann (chair), Andrea Bersani, Yuri Lobanov, Jost Luehning, Jerzy Smyrski, Technical Coordiantor: Lars Schmitt, Bernd Lewandowski (deputy), Spokespersons: Ulrich Wiedner, Paola Gianotti (deputy)</span> </p> </li> <li class="arxiv-result"> <div class="is-marginless"> <p class="list-title is-inline-block"><a href="https://arxiv.org/abs/0810.1216">arXiv:0810.1216</a> <span>&nbsp;[<a href="https://arxiv.org/pdf/0810.1216">pdf</a>, <a href="https://arxiv.org/format/0810.1216">other</a>]&nbsp;</span> </p> <div class="tags is-inline-block"> <span class="tag is-small is-link tooltip is-tooltip-top" data-tooltip="Instrumentation and Detectors">physics.ins-det</span> <span class="tag is-small is-grey tooltip is-tooltip-top" data-tooltip="High Energy Physics - Experiment">hep-ex</span> </div> </div> <p class="title is-5 mathjax"> Technical Design Report for PANDA Electromagnetic Calorimeter (EMC) </p> <p class="authors"> <span class="search-hit">Authors:</span> <a href="/search/physics?searchtype=author&amp;query=PANDA+Collaboration"> PANDA Collaboration</a>, <a href="/search/physics?searchtype=author&amp;query=Erni%2C+W">W. Erni</a>, <a href="/search/physics?searchtype=author&amp;query=Keshelashvili%2C+I">I. Keshelashvili</a>, <a href="/search/physics?searchtype=author&amp;query=Krusche%2C+B">B. Krusche</a>, <a href="/search/physics?searchtype=author&amp;query=Steinacher%2C+M">M. Steinacher</a>, <a href="/search/physics?searchtype=author&amp;query=Heng%2C+Y">Y. Heng</a>, <a href="/search/physics?searchtype=author&amp;query=Liu%2C+Z">Z. Liu</a>, <a href="/search/physics?searchtype=author&amp;query=Liu%2C+H">H. Liu</a>, <a href="/search/physics?searchtype=author&amp;query=Shen%2C+X">X. Shen</a>, <a href="/search/physics?searchtype=author&amp;query=Wang%2C+O">O. Wang</a>, <a href="/search/physics?searchtype=author&amp;query=Xu%2C+H">H. Xu</a>, <a href="/search/physics?searchtype=author&amp;query=Becker%2C+J">J. Becker</a>, <a href="/search/physics?searchtype=author&amp;query=Feldbauer%2C+F">F. Feldbauer</a>, <a href="/search/physics?searchtype=author&amp;query=Heinsius%2C+F+-">F. -H. Heinsius</a>, <a href="/search/physics?searchtype=author&amp;query=Held%2C+T">T. Held</a>, <a href="/search/physics?searchtype=author&amp;query=Koch%2C+H">H. Koch</a>, <a href="/search/physics?searchtype=author&amp;query=Kopf%2C+B">B. Kopf</a>, <a href="/search/physics?searchtype=author&amp;query=Pelizaeus%2C+M">M. Pelizaeus</a>, <a href="/search/physics?searchtype=author&amp;query=Schroeder%2C+T">T. Schroeder</a>, <a href="/search/physics?searchtype=author&amp;query=Steinke%2C+M">M. Steinke</a>, <a href="/search/physics?searchtype=author&amp;query=Wiedner%2C+U">U. Wiedner</a>, <a href="/search/physics?searchtype=author&amp;query=Zhong%2C+J">J. Zhong</a>, <a href="/search/physics?searchtype=author&amp;query=Bianconi%2C+A">A. Bianconi</a>, <a href="/search/physics?searchtype=author&amp;query=Bragadireanu%2C+M">M. Bragadireanu</a>, <a href="/search/physics?searchtype=author&amp;query=Pantea%2C+D">D. Pantea</a> , et al. (387 additional authors not shown) </p> <p class="abstract mathjax"> <span class="has-text-black-bis has-text-weight-semibold">Abstract</span>: <span class="abstract-short has-text-grey-dark mathjax" id="0810.1216v1-abstract-short" style="display: inline;"> This document presents the technical layout and the envisaged performance of the Electromagnetic Calorimeter (EMC) for the PANDA target spectrometer. The EMC has been designed to meet the physics goals of the PANDA experiment, which is being developed for the Facility for Antiproton and Ion Research (FAIR) at Darmstadt, Germany. The performance figures are based on extensive prototype tests and&hellip; <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('0810.1216v1-abstract-full').style.display = 'inline'; document.getElementById('0810.1216v1-abstract-short').style.display = 'none';">&#9661; More</a> </span> <span class="abstract-full has-text-grey-dark mathjax" id="0810.1216v1-abstract-full" style="display: none;"> This document presents the technical layout and the envisaged performance of the Electromagnetic Calorimeter (EMC) for the PANDA target spectrometer. The EMC has been designed to meet the physics goals of the PANDA experiment, which is being developed for the Facility for Antiproton and Ion Research (FAIR) at Darmstadt, Germany. The performance figures are based on extensive prototype tests and radiation hardness studies. The document shows that the EMC is ready for construction up to the front-end electronics interface. <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('0810.1216v1-abstract-full').style.display = 'none'; document.getElementById('0810.1216v1-abstract-short').style.display = 'inline';">&#9651; Less</a> </span> </p> <p class="is-size-7"><span class="has-text-black-bis has-text-weight-semibold">Submitted</span> 7 October, 2008; <span class="has-text-black-bis has-text-weight-semibold">originally announced</span> October 2008. </p> <p class="comments is-size-7"> <span class="has-text-black-bis has-text-weight-semibold">Comments:</span> <span class="has-text-grey-dark mathjax">199 pages, submitted to FAIR STI on July 1st 2008, Editors: Fritz-Herbert Heinsius, Bertram Kopf, Bernd Lewandowski (Deputy Technical Coordinator), Herbert L枚hner, Rainer Novotny (Project Coordinator), Klaus Peters, Philippe Rosier, Lars Schmitt (Technical Coordinator), Alexander Vasiliev; Spokespersons: Ulrich Wiedner, Paola Gianotti (deputy)</span> </p> </li> </ol> <div class="is-hidden-tablet"> <!-- feedback for mobile only --> <span class="help" style="display: inline-block;"><a href="https://github.com/arXiv/arxiv-search/releases">Search v0.5.6 released 2020-02-24</a>&nbsp;&nbsp;</span> </div> </div> </main> <footer> <div class="columns is-desktop" role="navigation" aria-label="Secondary"> <!-- MetaColumn 1 --> <div class="column"> <div class="columns"> <div class="column"> <ul class="nav-spaced"> <li><a href="https://info.arxiv.org/about">About</a></li> <li><a href="https://info.arxiv.org/help">Help</a></li> </ul> </div> <div class="column"> <ul class="nav-spaced"> <li> <svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 512 512" class="icon filter-black" role="presentation"><title>contact arXiv</title><desc>Click here to contact arXiv</desc><path d="M502.3 190.8c3.9-3.1 9.7-.2 9.7 4.7V400c0 26.5-21.5 48-48 48H48c-26.5 0-48-21.5-48-48V195.6c0-5 5.7-7.8 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