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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 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/10.3389/fdest.2024.1438902">10.3389/fdest.2024.1438902 <i class="fa fa-external-link" aria-hidden="true"></i></a></span> </div> </div> </div> <p class="title is-5 mathjax"> The muon beam monitor for the FAMU experiment: design, simulation, test and operation </p> <p class="authors"> <span class="search-hit">Authors:</span> <a href="/search/physics?searchtype=author&amp;query=Rossini%2C+R">R. Rossini</a>, <a href="/search/physics?searchtype=author&amp;query=Baldazzi%2C+G">G. Baldazzi</a>, <a href="/search/physics?searchtype=author&amp;query=Banfi%2C+S">S. Banfi</a>, <a href="/search/physics?searchtype=author&amp;query=Baruzzo%2C+M">M. Baruzzo</a>, <a href="/search/physics?searchtype=author&amp;query=Benocci%2C+R">R. Benocci</a>, <a href="/search/physics?searchtype=author&amp;query=Bertoni%2C+R">R. Bertoni</a>, <a href="/search/physics?searchtype=author&amp;query=Bonesini%2C+M">M. Bonesini</a>, <a href="/search/physics?searchtype=author&amp;query=Carsi%2C+S">S. Carsi</a>, <a href="/search/physics?searchtype=author&amp;query=Cirrincione%2C+D">D. Cirrincione</a>, <a href="/search/physics?searchtype=author&amp;query=Clemenza%2C+M">M. Clemenza</a>, <a href="/search/physics?searchtype=author&amp;query=Colace%2C+L">L. Colace</a>, <a href="/search/physics?searchtype=author&amp;query=de+Bari%2C+A">A. de Bari</a>, <a href="/search/physics?searchtype=author&amp;query=de+Vecchi%2C+C">C. de Vecchi</a>, <a href="/search/physics?searchtype=author&amp;query=Fasci%2C+E">E. Fasci</a>, <a href="/search/physics?searchtype=author&amp;query=Gaigher%2C+R">R. Gaigher</a>, <a href="/search/physics?searchtype=author&amp;query=Gianfrani%2C+L">L. Gianfrani</a>, <a href="/search/physics?searchtype=author&amp;query=Hillier%2C+A+D">A. D. Hillier</a>, <a href="/search/physics?searchtype=author&amp;query=Ishida%2C+K">K. Ishida</a>, <a href="/search/physics?searchtype=author&amp;query=King%2C+P+J+C">P. J. C. King</a>, <a href="/search/physics?searchtype=author&amp;query=Lord%2C+J+S">J. S. Lord</a>, <a href="/search/physics?searchtype=author&amp;query=Mazza%2C+R">R. Mazza</a>, <a href="/search/physics?searchtype=author&amp;query=Menegolli%2C+A">A. Menegolli</a>, <a href="/search/physics?searchtype=author&amp;query=Mocchiutti%2C+E">E. Mocchiutti</a>, <a href="/search/physics?searchtype=author&amp;query=Monzani%2C+S">S. Monzani</a>, <a href="/search/physics?searchtype=author&amp;query=Moretti%2C+L">L. Moretti</a> , et al. (13 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="2410.07257v1-abstract-short" style="display: inline;"> FAMU is an INFN-led muonic atom physics experiment based at the RIKEN-RAL muon facility at the ISIS Neutron and Muon Source (United Kingdom). The aim of FAMU is to measure the hyperfine splitting in muonic hydrogen to determine the value of the proton Zemach radius with accuracy better than 1%.The experiment has a scintillating-fibre hodoscope for beam monitoring and data normalisation. In order t&hellip; <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('2410.07257v1-abstract-full').style.display = 'inline'; document.getElementById('2410.07257v1-abstract-short').style.display = 'none';">&#9661; More</a> </span> <span class="abstract-full has-text-grey-dark mathjax" id="2410.07257v1-abstract-full" style="display: none;"> FAMU is an INFN-led muonic atom physics experiment based at the RIKEN-RAL muon facility at the ISIS Neutron and Muon Source (United Kingdom). The aim of FAMU is to measure the hyperfine splitting in muonic hydrogen to determine the value of the proton Zemach radius with accuracy better than 1%.The experiment has a scintillating-fibre hodoscope for beam monitoring and data normalisation. In order to carry out muon flux estimation, low-rate measurements were performed to extract the single-muon average deposited charge. Then, detector simulation in Geant4 and FLUKA allowed a thorough understanding of the single-muon response function, crucial for determining the muon flux. This work presents the design features of the FAMU beam monitor, along with the simulation and absolute calibration measurements in order to enable flux determination and enable data normalisation. <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('2410.07257v1-abstract-full').style.display = 'none'; document.getElementById('2410.07257v1-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> 8 October, 2024; <span class="has-text-black-bis has-text-weight-semibold">originally announced</span> October 2024. </p> <p class="comments is-size-7"> <span class="has-text-black-bis has-text-weight-semibold">Journal ref:</span> Front. Detect. Sci. Technol., 05 August 2024 Volume 2 - 2024 </p> </li> <li class="arxiv-result"> <div class="is-marginless"> <p class="list-title is-inline-block"><a href="https://arxiv.org/abs/2312.04987">arXiv:2312.04987</a> <span>&nbsp;[<a href="https://arxiv.org/pdf/2312.04987">pdf</a>, <a href="https://arxiv.org/format/2312.04987">other</a>]&nbsp;</span> </p> <div class="tags is-inline-block"> <span class="tag is-small is-link tooltip is-tooltip-top" data-tooltip="Atomic Physics">physics.atom-ph</span> <span class="tag is-small is-grey tooltip is-tooltip-top" data-tooltip="High Energy Physics - Experiment">hep-ex</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/10.1088/1748-0221/19/02/C02034">10.1088/1748-0221/19/02/C02034 <i class="fa fa-external-link" aria-hidden="true"></i></a></span> </div> </div> </div> <p class="title is-5 mathjax"> Status of the detector setup for the FAMU experiment at RIKEN-RAL for a precision measurement of the Zemach radius of the proton in muonic hydrogen </p> <p class="authors"> <span class="search-hit">Authors:</span> <a href="/search/physics?searchtype=author&amp;query=Rossini%2C+R">R. Rossini</a>, <a href="/search/physics?searchtype=author&amp;query=Adamczak%2C+A">A. Adamczak</a>, <a href="/search/physics?searchtype=author&amp;query=Bakalov%2C+D">D. Bakalov</a>, <a href="/search/physics?searchtype=author&amp;query=Baldazzi%2C+G">G. Baldazzi</a>, <a href="/search/physics?searchtype=author&amp;query=Banfi%2C+S">S. Banfi</a>, <a href="/search/physics?searchtype=author&amp;query=Baruzzo%2C+M">M. Baruzzo</a>, <a href="/search/physics?searchtype=author&amp;query=Benocci%2C+R">R. Benocci</a>, <a href="/search/physics?searchtype=author&amp;query=Bertoni%2C+R">R. Bertoni</a>, <a href="/search/physics?searchtype=author&amp;query=Bonesini%2C+M">M. Bonesini</a>, <a href="/search/physics?searchtype=author&amp;query=Bonvicini%2C+V">V. Bonvicini</a>, <a href="/search/physics?searchtype=author&amp;query=Cabrera%2C+H">H. Cabrera</a>, <a href="/search/physics?searchtype=author&amp;query=Carsi%2C+S">S. Carsi</a>, <a href="/search/physics?searchtype=author&amp;query=Cirrincione%2C+D">D. Cirrincione</a>, <a href="/search/physics?searchtype=author&amp;query=Clemenza%2C+M">M. Clemenza</a>, <a href="/search/physics?searchtype=author&amp;query=Colace%2C+L">L. Colace</a>, <a href="/search/physics?searchtype=author&amp;query=Danailov%2C+M+B">M. B. Danailov</a>, <a href="/search/physics?searchtype=author&amp;query=Danev%2C+P">P. Danev</a>, <a href="/search/physics?searchtype=author&amp;query=de+Bari%2C+A">A. de Bari</a>, <a href="/search/physics?searchtype=author&amp;query=de+Vecchi%2C+C">C. de Vecchi</a>, <a href="/search/physics?searchtype=author&amp;query=Fasci%2C+E">E. Fasci</a>, <a href="/search/physics?searchtype=author&amp;query=Gadedjisso-Tossou%2C+K+S">K. S. Gadedjisso-Tossou</a>, <a href="/search/physics?searchtype=author&amp;query=Gaigher%2C+R">R. Gaigher</a>, <a href="/search/physics?searchtype=author&amp;query=Gianfrani%2C+L">L. Gianfrani</a>, <a href="/search/physics?searchtype=author&amp;query=Hillier%2C+A+D">A. D. Hillier</a>, <a href="/search/physics?searchtype=author&amp;query=Ishida%2C+K">K. Ishida</a> , et al. (24 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="2312.04987v1-abstract-short" style="display: inline;"> The FAMU experiment at RIKEN-RAL is a muonic atom experiment with the aim to determine the Zemach radius of the proton by measuring the 1s hyperfine splitting in muonic hydrogen. The activity of the FAMU Collaboration in the years 2015-2023 enabled the final optimisation of the detector-target setup as well as the gas working condition in terms of temperature, pressure and gas mixture composition.&hellip; <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('2312.04987v1-abstract-full').style.display = 'inline'; document.getElementById('2312.04987v1-abstract-short').style.display = 'none';">&#9661; More</a> </span> <span class="abstract-full has-text-grey-dark mathjax" id="2312.04987v1-abstract-full" style="display: none;"> The FAMU experiment at RIKEN-RAL is a muonic atom experiment with the aim to determine the Zemach radius of the proton by measuring the 1s hyperfine splitting in muonic hydrogen. The activity of the FAMU Collaboration in the years 2015-2023 enabled the final optimisation of the detector-target setup as well as the gas working condition in terms of temperature, pressure and gas mixture composition. The experiment has started its data taking in July 2023. The status of the detector setup for the 2023 experimental runs, for the beam characterisation and muonic X-ray detection in the 100-200 keV energy range, is presented and discussed. <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('2312.04987v1-abstract-full').style.display = 'none'; document.getElementById('2312.04987v1-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> 8 December, 2023; <span class="has-text-black-bis has-text-weight-semibold">originally announced</span> December 2023. </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">Submitted to JINST</span> </p> </li> <li class="arxiv-result"> <div class="is-marginless"> <p class="list-title is-inline-block"><a href="https://arxiv.org/abs/2312.04971">arXiv:2312.04971</a> <span>&nbsp;[<a href="https://arxiv.org/pdf/2312.04971">pdf</a>, <a href="https://arxiv.org/format/2312.04971">other</a>]&nbsp;</span> </p> <div class="tags is-inline-block"> <span class="tag is-small is-link 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="Instrumentation and Detectors">physics.ins-det</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/10.1088/1748-0221/19/01/C01024">10.1088/1748-0221/19/01/C01024 <i class="fa fa-external-link" aria-hidden="true"></i></a></span> </div> </div> </div> <p class="title is-5 mathjax"> Characterisation of a low-momentum high-rate muon beam monitor for the FAMU experiment at the CNAO-XPR beam facility </p> <p class="authors"> <span class="search-hit">Authors:</span> <a href="/search/physics?searchtype=author&amp;query=Rossini%2C+R">Riccardo Rossini</a>, <a href="/search/physics?searchtype=author&amp;query=Benocci%2C+R">Roberto Benocci</a>, <a href="/search/physics?searchtype=author&amp;query=Bertoni%2C+R">Roberto Bertoni</a>, <a href="/search/physics?searchtype=author&amp;query=Bonesini%2C+M">Maurizio Bonesini</a>, <a href="/search/physics?searchtype=author&amp;query=Carsi%2C+S">Stefano Carsi</a>, <a href="/search/physics?searchtype=author&amp;query=Clemenza%2C+M">Massimiliano Clemenza</a>, <a href="/search/physics?searchtype=author&amp;query=de+Bari%2C+A">Antonio de Bari</a>, <a href="/search/physics?searchtype=author&amp;query=Donetti%2C+M">Marco Donetti</a>, <a href="/search/physics?searchtype=author&amp;query=de+Vecchi%2C+C">Carlo de Vecchi</a>, <a href="/search/physics?searchtype=author&amp;query=Menegolli%2C+A">Alessandro Menegolli</a>, <a href="/search/physics?searchtype=author&amp;query=Mereghetti%2C+A">Alessio Mereghetti</a>, <a href="/search/physics?searchtype=author&amp;query=Mocchiutti%2C+E">Emiliano Mocchiutti</a>, <a href="/search/physics?searchtype=author&amp;query=Petroselli%2C+C">Christian Petroselli</a>, <a href="/search/physics?searchtype=author&amp;query=Prata%2C+M+C">Marco Cesare Prata</a>, <a href="/search/physics?searchtype=author&amp;query=Pullia%2C+M">Marco Pullia</a>, <a href="/search/physics?searchtype=author&amp;query=Raselli%2C+G+L">Gian Luca Raselli</a>, <a href="/search/physics?searchtype=author&amp;query=Rossella%2C+M">Massimo Rossella</a>, <a href="/search/physics?searchtype=author&amp;query=Savazzi%2C+S">Simone Savazzi</a>, <a href="/search/physics?searchtype=author&amp;query=Tortora%2C+L">Ludovico Tortora</a>, <a href="/search/physics?searchtype=author&amp;query=Vallazza%2C+E+S">Erik Silvio Vallazza</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="2312.04971v1-abstract-short" style="display: inline;"> The FAMU experiment aims at an indirect measurement of the Zemach radius of the proton. The measurement is carried out on muonic hydrogen atoms produced through the low-momentum (50-60 MeV/c) muon beam a the RIKEN-RAL negative muon facility. The particle flux plays an important role in this measurement, as it is proportional to the number of muonic hydrogen atoms produced, which is the target of t&hellip; <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('2312.04971v1-abstract-full').style.display = 'inline'; document.getElementById('2312.04971v1-abstract-short').style.display = 'none';">&#9661; More</a> </span> <span class="abstract-full has-text-grey-dark mathjax" id="2312.04971v1-abstract-full" style="display: none;"> The FAMU experiment aims at an indirect measurement of the Zemach radius of the proton. The measurement is carried out on muonic hydrogen atoms produced through the low-momentum (50-60 MeV/c) muon beam a the RIKEN-RAL negative muon facility. The particle flux plays an important role in this measurement, as it is proportional to the number of muonic hydrogen atoms produced, which is the target of the FAMU experimental method. The beam monitor calibration technique and results, presented here, are meant to extract a reliable estimation of the muon flux during the FAMU data taking. These measurements were carried out at the CNAO synchrotron in Pavia, Italy, using proton beams and supported by Monte Carlo simulation of the detector in Geant4. <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('2312.04971v1-abstract-full').style.display = 'none'; document.getElementById('2312.04971v1-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> 8 December, 2023; <span class="has-text-black-bis has-text-weight-semibold">originally announced</span> December 2023. </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">Submitted to JINST</span> </p> </li> <li class="arxiv-result"> <div class="is-marginless"> <p class="list-title is-inline-block"><a href="https://arxiv.org/abs/2010.16251">arXiv:2010.16251</a> <span>&nbsp;[<a href="https://arxiv.org/pdf/2010.16251">pdf</a>, <a href="https://arxiv.org/format/2010.16251">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="Nuclear Experiment">nucl-ex</span> </div> </div> <p class="title is-5 mathjax"> The FragmentatiOn Of Target Experiment (FOOT) and its DAQ system </p> <p class="authors"> <span class="search-hit">Authors:</span> <a href="/search/physics?searchtype=author&amp;query=Biondi%2C+S">Silvia Biondi</a>, <a href="/search/physics?searchtype=author&amp;query=Alexandrov%2C+A">Andrey Alexandrov</a>, <a href="/search/physics?searchtype=author&amp;query=Alpat%2C+B">Behcet Alpat</a>, <a href="/search/physics?searchtype=author&amp;query=Ambrosi%2C+G">Giovanni Ambrosi</a>, <a href="/search/physics?searchtype=author&amp;query=Argir%C3%B2%2C+S">Stefano Argir貌</a>, <a href="/search/physics?searchtype=author&amp;query=Diaz%2C+R+A">Rau Arteche Diaz</a>, <a href="/search/physics?searchtype=author&amp;query=Bartosik%2C+N">Nazarm Bartosik</a>, <a href="/search/physics?searchtype=author&amp;query=Battistoni%2C+G">Giuseppe Battistoni</a>, <a href="/search/physics?searchtype=author&amp;query=Belcari%2C+N">Nicola Belcari</a>, <a href="/search/physics?searchtype=author&amp;query=Bellinzona%2C+E">Elettra Bellinzona</a>, <a href="/search/physics?searchtype=author&amp;query=Bisogni%2C+M+G">Maria Giuseppina Bisogni</a>, <a href="/search/physics?searchtype=author&amp;query=Bruni%2C+G">Graziano Bruni</a>, <a href="/search/physics?searchtype=author&amp;query=Carra%2C+P">Pietro Carra</a>, <a href="/search/physics?searchtype=author&amp;query=Cerello%2C+P">Piergiorgio Cerello</a>, <a href="/search/physics?searchtype=author&amp;query=Ciarrocchi%2C+E">Esther Ciarrocchi</a>, <a href="/search/physics?searchtype=author&amp;query=Clozza%2C+A">Alberto Clozza</a>, <a href="/search/physics?searchtype=author&amp;query=Colombi%2C+S">Sofia Colombi</a>, <a href="/search/physics?searchtype=author&amp;query=De+Lellis%2C+G">Giovanni De Lellis</a>, <a href="/search/physics?searchtype=author&amp;query=Del+Guerra%2C+A">Alberto Del Guerra</a>, <a href="/search/physics?searchtype=author&amp;query=De+Simoni%2C+M">Micol De Simoni</a>, <a href="/search/physics?searchtype=author&amp;query=Di+Crescenzo%2C+A">Antonia Di Crescenzo</a>, <a href="/search/physics?searchtype=author&amp;query=Di+Ruzza%2C+B">Benedetto Di Ruzza</a>, <a href="/search/physics?searchtype=author&amp;query=Donetti%2C+M">Marco Donetti</a>, <a href="/search/physics?searchtype=author&amp;query=Dong%2C+Y">Yunsheng Dong</a>, <a href="/search/physics?searchtype=author&amp;query=Durante%2C+M">Marco Durante</a> , et al. (70 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="2010.16251v1-abstract-short" style="display: inline;"> The FragmentatiOn Of Target (FOOT) experiment aims to provide precise nuclear cross-section measurements for two different fields: hadrontherapy and radio-protection in space. The main reason is the important role the nuclear fragmentation process plays in both fields, where the health risks caused by radiation are very similar and mainly attributable to the fragmentation process. The FOOT experim&hellip; <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('2010.16251v1-abstract-full').style.display = 'inline'; document.getElementById('2010.16251v1-abstract-short').style.display = 'none';">&#9661; More</a> </span> <span class="abstract-full has-text-grey-dark mathjax" id="2010.16251v1-abstract-full" style="display: none;"> The FragmentatiOn Of Target (FOOT) experiment aims to provide precise nuclear cross-section measurements for two different fields: hadrontherapy and radio-protection in space. The main reason is the important role the nuclear fragmentation process plays in both fields, where the health risks caused by radiation are very similar and mainly attributable to the fragmentation process. The FOOT experiment has been developed in such a way that the experimental setup is easily movable and fits the space limitations of the experimental and treatment rooms available in hadrontherapy treatment centers, where most of the data takings are carried out. The Trigger and Data Acquisition system needs to follow the same criteria and it should work in different laboratories and in different conditions. It has been designed to acquire the largest sample size with high accuracy in a controlled and online-monitored environment. The data collected are processed in real-time for quality assessment and are available to the DAQ crew and detector experts during data taking. <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('2010.16251v1-abstract-full').style.display = 'none'; document.getElementById('2010.16251v1-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 October, 2020; <span class="has-text-black-bis has-text-weight-semibold">originally announced</span> October 2020. </p> </li> <li class="arxiv-result"> <div class="is-marginless"> <p class="list-title is-inline-block"><a href="https://arxiv.org/abs/2005.09905">arXiv:2005.09905</a> <span>&nbsp;[<a href="https://arxiv.org/pdf/2005.09905">pdf</a>, <a href="https://arxiv.org/format/2005.09905">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 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/10.1088/1748-0221/15/07/C07027">10.1088/1748-0221/15/07/C07027 <i class="fa fa-external-link" aria-hidden="true"></i></a></span> </div> </div> </div> <p class="title is-5 mathjax"> Beam test characterisation of a Plastic Scintillator Prototype for the space-based cosmic ray experiment HERD </p> <p class="authors"> <span class="search-hit">Authors:</span> <a href="/search/physics?searchtype=author&amp;query=Cattaneo%2C+P+W">P. W. Cattaneo</a>, <a href="/search/physics?searchtype=author&amp;query=Pullia%2C+M">M. Pullia</a>, <a href="/search/physics?searchtype=author&amp;query=Prata%2C+M+C">M. C. Prata</a>, <a href="/search/physics?searchtype=author&amp;query=Rappoldi%2C+A">A. Rappoldi</a>, <a href="/search/physics?searchtype=author&amp;query=Rossella%2C+M">M. Rossella</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="2005.09905v1-abstract-short" style="display: inline;"> The High Energy cosmic-Radiation Detector (HERD) facility is planned to go onboard China&#39;s Space Station, planned to be operational starting in around 2025 for about 10 years. The main scientific objectives of HERD are the search for signals of dark matter annihilation products, precise cosmic electron/positron spectrum and measurements of anisotropy up to 10 TeV, precise cosmic ray spectrum and c&hellip; <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('2005.09905v1-abstract-full').style.display = 'inline'; document.getElementById('2005.09905v1-abstract-short').style.display = 'none';">&#9661; More</a> </span> <span class="abstract-full has-text-grey-dark mathjax" id="2005.09905v1-abstract-full" style="display: none;"> The High Energy cosmic-Radiation Detector (HERD) facility is planned to go onboard China&#39;s Space Station, planned to be operational starting in around 2025 for about 10 years. The main scientific objectives of HERD are the search for signals of dark matter annihilation products, precise cosmic electron/positron spectrum and measurements of anisotropy up to 10 TeV, precise cosmic ray spectrum and composition measurements up to the knee energy (1 PeV), and high energy $纬$-ray monitoring and survey. HERD consists of a 3D cubic crystals calorimeter (CALO) surrounded by microstrip silicon trackers (STKs) and scintillating fiber trackers (FIT) and by a Plastic Scintillator Detector (PSD) for $纬$-ray veto and ion charge measurement. A PSD prototype consisting of a scintillator tile readout by two arrays of SiPMs on opposite sides has been tested with proton and C ion beam at the CNAO (Centro Nazionale Adroterapia Oncologica) in Pavia, (Italy). Preliminary results on charge resolution are presented. <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('2005.09905v1-abstract-full').style.display = 'none'; document.getElementById('2005.09905v1-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> 20 May, 2020; <span class="has-text-black-bis has-text-weight-semibold">originally announced</span> May 2020. </p> </li> <li class="arxiv-result"> <div class="is-marginless"> <p class="list-title is-inline-block"><a href="https://arxiv.org/abs/1411.7174">arXiv:1411.7174</a> <span>&nbsp;[<a href="https://arxiv.org/pdf/1411.7174">pdf</a>, <a href="https://arxiv.org/format/1411.7174">other</a>]&nbsp;</span> </p> <div class="tags is-inline-block"> <span class="tag is-small is-link tooltip is-tooltip-top" data-tooltip="Medical Physics">physics.med-ph</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/10.1088/1748-0221/10/01/C01010">10.1088/1748-0221/10/01/C01010 <i class="fa fa-external-link" aria-hidden="true"></i></a></span> </div> </div> </div> <p class="title is-5 mathjax"> First tests for an online treatment monitoring system with in-beam PET for proton therapy </p> <p class="authors"> <span class="search-hit">Authors:</span> <a href="/search/physics?searchtype=author&amp;query=Kraan%2C+A+C">Aafke C. Kraan</a>, <a href="/search/physics?searchtype=author&amp;query=Battistoni%2C+G">G. Battistoni</a>, <a href="/search/physics?searchtype=author&amp;query=Belcari%2C+N">N. Belcari</a>, <a href="/search/physics?searchtype=author&amp;query=Camarlinghi%2C+N">N. Camarlinghi</a>, <a href="/search/physics?searchtype=author&amp;query=Cappucci%2C+F">F. Cappucci</a>, <a href="/search/physics?searchtype=author&amp;query=Ciocca%2C+M">M. Ciocca</a>, <a href="/search/physics?searchtype=author&amp;query=Ferrari%2C+A">A. Ferrari</a>, <a href="/search/physics?searchtype=author&amp;query=Ferretti%2C+S">S. Ferretti</a>, <a href="/search/physics?searchtype=author&amp;query=Mairani%2C+A">A. Mairani</a>, <a href="/search/physics?searchtype=author&amp;query=Molinelli%2C+S">S. Molinelli</a>, <a href="/search/physics?searchtype=author&amp;query=Pullia%2C+M">M. Pullia</a>, <a href="/search/physics?searchtype=author&amp;query=Retico%2C+A">A. Retico</a>, <a href="/search/physics?searchtype=author&amp;query=Sala%2C+P">P. Sala</a>, <a href="/search/physics?searchtype=author&amp;query=Sportelli%2C+G">G. Sportelli</a>, <a href="/search/physics?searchtype=author&amp;query=Del+Guerra%2C+A">A. Del Guerra</a>, <a href="/search/physics?searchtype=author&amp;query=Rosso%2C+V">V. Rosso</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="1411.7174v1-abstract-short" style="display: inline;"> PET imaging is a non-invasive technique for particle range verification in proton therapy. It is based on measuring the beta+ annihilations caused by nuclear interactions of the protons in the patient. In this work we present measurements for proton range verification in phantoms, performed at the CNAO particle therapy treatment center in Pavia, Italy, with our 10 x 10 cm^2 planar PET prototype Do&hellip; <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('1411.7174v1-abstract-full').style.display = 'inline'; document.getElementById('1411.7174v1-abstract-short').style.display = 'none';">&#9661; More</a> </span> <span class="abstract-full has-text-grey-dark mathjax" id="1411.7174v1-abstract-full" style="display: none;"> PET imaging is a non-invasive technique for particle range verification in proton therapy. It is based on measuring the beta+ annihilations caused by nuclear interactions of the protons in the patient. In this work we present measurements for proton range verification in phantoms, performed at the CNAO particle therapy treatment center in Pavia, Italy, with our 10 x 10 cm^2 planar PET prototype DoPET. PMMA phantoms were irradiated with mono-energetic proton beams and clinical treatment plans, and PET data were acquired during and shortly after proton irradiation. We created 1-D profiles of the beta+ activity along the proton beam-axis, and evaluated the difference between the proximal rise and the distal fall-off position of the activity distribution. A good agreement with FLUKA Monte Carlo predictions was obtained. We also assessed the system response when the PMMA phantom contained an air cavity. The system was able to detect these cavities quickly after irradiation. <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('1411.7174v1-abstract-full').style.display = 'none'; document.getElementById('1411.7174v1-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 November, 2014; <span class="has-text-black-bis has-text-weight-semibold">originally announced</span> November 2014. </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">11 pages, 6 figures, Proceedings for International Workshop on Radiation Imaging Detectors, 2014</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 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