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<p class="title is-5 mathjax"> Drell-Yan cross-sections with fiducial cuts: impact of linear power corrections and $q_T$-resummation in PDF determination </p> <p class="authors"> <span class="search-hit">Authors:</span> <a href="/search/hep-ph?searchtype=author&amp;query=Amoroso%2C+S">Simone Amoroso</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Bella%2C+L+A">Ludovica Aperio Bella</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Boonekamp%2C+M">Maarten Boonekamp</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Camarda%2C+S">Stefano Camarda</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Glazov%2C+A">Alexander Glazov</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Guida%2C+A">Alessandro Guida</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Sadykov%2C+R">Renat Sadykov</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Yermolchyk%2C+Y">Yulia Yermolchyk</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="2209.13535v1-abstract-short" style="display: inline;"> Measurement at Hadron colliders of neutral- and charged-current Drell-Yan production provide essential constraints in the determination of parton distribution functions. Experimentally, they have reached percent level precision, challenging the accuracy of the theoretical predictions. In this work we benchmark the novel implementation in $\texttt{DYTurbo}$ of linear fiducial power corrections in t&hellip; <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('2209.13535v1-abstract-full').style.display = 'inline'; document.getElementById('2209.13535v1-abstract-short').style.display = 'none';">&#9661; More</a> </span> <span class="abstract-full has-text-grey-dark mathjax" id="2209.13535v1-abstract-full" style="display: none;"> Measurement at Hadron colliders of neutral- and charged-current Drell-Yan production provide essential constraints in the determination of parton distribution functions. Experimentally, they have reached percent level precision, challenging the accuracy of the theoretical predictions. In this work we benchmark the novel implementation in $\texttt{DYTurbo}$ of linear fiducial power corrections in the $q_T$-subtraction formalism at NLO and NNLO in QCD. We illustrate how the inclusion of linear fiducial power corrections impacts predictions for precise $W$ and $Z$ measurements from the LHC and affects their description by modern global parton distribution functions. The further inclusion of $q_T$-resummation corrections in the theoretical predictions leads to a better modelling of the lepton $p_T$ distribution and we study how this improve the description of the data. <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('2209.13535v1-abstract-full').style.display = 'none'; document.getElementById('2209.13535v1-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> 27 September, 2022; <span class="has-text-black-bis has-text-weight-semibold">originally announced</span> September 2022. </p> </li> <li class="arxiv-result"> <div class="is-marginless"> <p class="list-title is-inline-block"><a href="https://arxiv.org/abs/2201.02436">arXiv:2201.02436</a> <span>&nbsp;[<a href="https://arxiv.org/pdf/2201.02436">pdf</a>, <a href="https://arxiv.org/format/2201.02436">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="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> </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/10.1140/epjc/s10052-021-09967-z">10.1140/epjc/s10052-021-09967-z <i class="fa fa-external-link" aria-hidden="true"></i></a></span> </div> </div> </div> <p class="title is-5 mathjax"> An Experiment for Electron-Hadron Scattering at the LHC </p> <p class="authors"> <span class="search-hit">Authors:</span> <a href="/search/hep-ph?searchtype=author&amp;query=Andr%C3%A9%2C+K+D+J">K. D. J. Andr茅</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Bella%2C+L+A">L. Aperio Bella</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Armesto%2C+N">N. Armesto</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Bogacz%2C+S+A">S. A. Bogacz</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Britzger%2C+D">D. Britzger</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Br%C3%BCning%2C+O+S">O. S. Br眉ning</a>, <a href="/search/hep-ph?searchtype=author&amp;query=D%27Onofrio%2C+M">M. D&#39;Onofrio</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Ferreiro%2C+E+G">E. G. Ferreiro</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Fischer%2C+O">O. Fischer</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Gwenlan%2C+C">C. Gwenlan</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Holzer%2C+B+J">B. J. Holzer</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Klein%2C+M">M. Klein</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Klein%2C+U">U. Klein</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Kocak%2C+F">F. Kocak</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Kostka%2C+P">P. Kostka</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Kumar%2C+M">M. Kumar</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Mellado%2C+B">B. Mellado</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Milhano%2C+J+G">J. G. Milhano</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Newman%2C+P+R">P. R. Newman</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Piotrzkowski%2C+K">K. Piotrzkowski</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Polini%2C+A">A. Polini</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Ruan%2C+X">X. Ruan</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Russenschuk%2C+S">S. Russenschuk</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Schwanenberger%2C+C">C. Schwanenberger</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Vilella-Figueras%2C+E">E. Vilella-Figueras</a> , et al. (1 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="2201.02436v1-abstract-short" style="display: inline;"> Novel considerations are presented on the physics, apparatus and accelerator designs for a future, luminous, energy frontier electron-hadron ($eh$) scattering experiment at the LHC in the thirties for which key physics topics and their relation to the hadron-hadron HL-LHC physics programme are discussed. Demands are derived set by these physics topics on the design of the LHeC detector, a correspo&hellip; <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('2201.02436v1-abstract-full').style.display = 'inline'; document.getElementById('2201.02436v1-abstract-short').style.display = 'none';">&#9661; More</a> </span> <span class="abstract-full has-text-grey-dark mathjax" id="2201.02436v1-abstract-full" style="display: none;"> Novel considerations are presented on the physics, apparatus and accelerator designs for a future, luminous, energy frontier electron-hadron ($eh$) scattering experiment at the LHC in the thirties for which key physics topics and their relation to the hadron-hadron HL-LHC physics programme are discussed. Demands are derived set by these physics topics on the design of the LHeC detector, a corresponding update of which is described. Optimisations on the accelerator design, especially the interaction region (IR), are presented. Initial accelerator considerations indicate that a common IR is possible to be built which alternately could serve $eh$ and $hh$ collisions while other experiments would stay on $hh$ in either condition. A forward-backward symmetrised option of the LHeC detector is sketched which would permit extending the LHeC physics programme to also include aspects of hadron-hadron physics. The vision of a joint $eh$ and $hh$ physics experiment is shown to open new prospects for solving fundamental problems of high energy heavy-ion physics including the partonic structure of nuclei and the emergence of hydrodynamics in quantum field theory while the genuine TeV scale DIS physics is of unprecedented rank. <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('2201.02436v1-abstract-full').style.display = 'none'; document.getElementById('2201.02436v1-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 January, 2022; <span class="has-text-black-bis has-text-weight-semibold">originally announced</span> January 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">27 pages, 24 figures, 6 tables; to appear in Eur. Phys. J. C</span> </p> </li> <li class="arxiv-result"> <div class="is-marginless"> <p class="list-title is-inline-block"><a href="https://arxiv.org/abs/2007.14491">arXiv:2007.14491</a> <span>&nbsp;[<a href="https://arxiv.org/pdf/2007.14491">pdf</a>, <a href="https://arxiv.org/format/2007.14491">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="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/10.1088/1361-6471/abf3ba">10.1088/1361-6471/abf3ba <i class="fa fa-external-link" aria-hidden="true"></i></a></span> </div> </div> </div> <p class="title is-5 mathjax"> The Large Hadron-Electron Collider at the HL-LHC </p> <p class="authors"> <span class="search-hit">Authors:</span> <a href="/search/hep-ph?searchtype=author&amp;query=Agostini%2C+P">P. Agostini</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Aksakal%2C+H">H. Aksakal</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Alekhin%2C+S">S. Alekhin</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Allport%2C+P+P">P. P. Allport</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Andari%2C+N">N. Andari</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Andre%2C+K+D+J">K. D. J. Andre</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Angal-Kalinin%2C+D">D. Angal-Kalinin</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Antusch%2C+S">S. Antusch</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Bella%2C+L+A">L. Aperio Bella</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Apolinario%2C+L">L. Apolinario</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Apsimon%2C+R">R. Apsimon</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Apyan%2C+A">A. Apyan</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Arduini%2C+G">G. Arduini</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Ari%2C+V">V. Ari</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Armbruster%2C+A">A. Armbruster</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Armesto%2C+N">N. Armesto</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Auchmann%2C+B">B. Auchmann</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Aulenbacher%2C+K">K. Aulenbacher</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Azuelos%2C+G">G. Azuelos</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Backovic%2C+S">S. Backovic</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Bailey%2C+I">I. Bailey</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Bailey%2C+S">S. Bailey</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Balli%2C+F">F. Balli</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Behera%2C+S">S. Behera</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Behnke%2C+O">O. Behnke</a> , et al. (312 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="2007.14491v2-abstract-short" style="display: inline;"> The Large Hadron electron Collider (LHeC) is designed to move the field of deep inelastic scattering (DIS) to the energy and intensity frontier of particle physics. Exploiting energy recovery technology, it collides a novel, intense electron beam with a proton or ion beam from the High Luminosity--Large Hadron Collider (HL-LHC). The accelerator and interaction region are designed for concurrent el&hellip; <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('2007.14491v2-abstract-full').style.display = 'inline'; document.getElementById('2007.14491v2-abstract-short').style.display = 'none';">&#9661; More</a> </span> <span class="abstract-full has-text-grey-dark mathjax" id="2007.14491v2-abstract-full" style="display: none;"> The Large Hadron electron Collider (LHeC) is designed to move the field of deep inelastic scattering (DIS) to the energy and intensity frontier of particle physics. Exploiting energy recovery technology, it collides a novel, intense electron beam with a proton or ion beam from the High Luminosity--Large Hadron Collider (HL-LHC). The accelerator and interaction region are designed for concurrent electron-proton and proton-proton operation. This report represents an update of the Conceptual Design Report (CDR) of the LHeC, published in 2012. It comprises new results on parton structure of the proton and heavier nuclei, QCD dynamics, electroweak and top-quark physics. It is shown how the LHeC will open a new chapter of nuclear particle physics in extending the accessible kinematic range in lepton-nucleus scattering by several orders of magnitude. Due to enhanced luminosity, large energy and the cleanliness of the hadronic final states, the LHeC has a strong Higgs physics programme and its own discovery potential for new physics. Building on the 2012 CDR, the report represents a detailed updated design of the energy recovery electron linac (ERL) including new lattice, magnet, superconducting radio frequency technology and further components. Challenges of energy recovery are described and the lower energy, high current, 3-turn ERL facility, PERLE at Orsay, is presented which uses the LHeC characteristics serving as a development facility for the design and operation of the LHeC. An updated detector design is presented corresponding to the acceptance, resolution and calibration goals which arise from the Higgs and parton density function physics programmes. The paper also presents novel results on the Future Circular Collider in electron-hadron mode, FCC-eh, which utilises the same ERL technology to further extend the reach of DIS to even higher centre-of-mass energies. <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('2007.14491v2-abstract-full').style.display = 'none'; document.getElementById('2007.14491v2-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> 12 April, 2021; <span class="has-text-black-bis has-text-weight-semibold">v1</span> submitted 28 July, 2020; <span class="has-text-black-bis has-text-weight-semibold">originally announced</span> July 2020. </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">373 pages, many figures, to be published by J. Phys. G</span> </p> <p class="comments is-size-7"> <span class="has-text-black-bis has-text-weight-semibold">Report number:</span> CERN-ACC-Note-2020-0002 </p> <p class="comments is-size-7"> <span class="has-text-black-bis has-text-weight-semibold">Journal ref:</span> J.Phys.G 48 (2021) 11, 110501 </p> </li> <li class="arxiv-result"> <div class="is-marginless"> <p class="list-title is-inline-block"><a href="https://arxiv.org/abs/1902.04070">arXiv:1902.04070</a> <span>&nbsp;[<a href="https://arxiv.org/pdf/1902.04070">pdf</a>, <a href="https://arxiv.org/format/1902.04070">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 - Phenomenology">hep-ph</span> </div> </div> <p class="title is-5 mathjax"> Standard Model Physics at the HL-LHC and HE-LHC </p> <p class="authors"> <span class="search-hit">Authors:</span> <a href="/search/hep-ph?searchtype=author&amp;query=Azzi%2C+P">P. Azzi</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Farry%2C+S">S. Farry</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Nason%2C+P">P. Nason</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Tricoli%2C+A">A. Tricoli</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Zeppenfeld%2C+D">D. Zeppenfeld</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Khalek%2C+R+A">R. Abdul Khalek</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Alimena%2C+J">J. Alimena</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Andari%2C+N">N. Andari</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Bella%2C+L+A">L. Aperio Bella</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Armbruster%2C+A+J">A. J. Armbruster</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Baglio%2C+J">J. Baglio</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Bailey%2C+S">S. Bailey</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Bakos%2C+E">E. Bakos</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Bakshi%2C+A">A. Bakshi</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Baldenegro%2C+C">C. Baldenegro</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Balli%2C+F">F. Balli</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Barker%2C+A">A. Barker</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Barter%2C+W">W. Barter</a>, <a href="/search/hep-ph?searchtype=author&amp;query=de+Blas%2C+J">J. de Blas</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Blekman%2C+F">F. Blekman</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Bloch%2C+D">D. Bloch</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Bodek%2C+A">A. Bodek</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Boonekamp%2C+M">M. Boonekamp</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Boos%2C+E">E. Boos</a>, <a href="/search/hep-ph?searchtype=author&amp;query=Sola%2C+J+D+B">J. D. Bossio Sola</a> , et al. (201 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="1902.04070v3-abstract-short" style="display: inline;"> The successful operation of the Large Hadron Collider (LHC) and the excellent performance of the ATLAS, CMS, LHCb and ALICE detectors in Run-1 and Run-2 with $pp$ collisions at center-of-mass energies of 7, 8 and 13 TeV as well as the giant leap in precision calculations and modeling of fundamental interactions at hadron colliders have allowed an extraordinary breadth of physics studies including&hellip; <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('1902.04070v3-abstract-full').style.display = 'inline'; document.getElementById('1902.04070v3-abstract-short').style.display = 'none';">&#9661; More</a> </span> <span class="abstract-full has-text-grey-dark mathjax" id="1902.04070v3-abstract-full" style="display: none;"> The successful operation of the Large Hadron Collider (LHC) and the excellent performance of the ATLAS, CMS, LHCb and ALICE detectors in Run-1 and Run-2 with $pp$ collisions at center-of-mass energies of 7, 8 and 13 TeV as well as the giant leap in precision calculations and modeling of fundamental interactions at hadron colliders have allowed an extraordinary breadth of physics studies including precision measurements of a variety physics processes. The LHC results have so far confirmed the validity of the Standard Model of particle physics up to unprecedented energy scales and with great precision in the sectors of strong and electroweak interactions as well as flavour physics, for instance in top quark physics. The upgrade of the LHC to a High Luminosity phase (HL-LHC) at 14 TeV center-of-mass energy with 3 ab$^{-1}$ of integrated luminosity will probe the Standard Model with even greater precision and will extend the sensitivity to possible anomalies in the Standard Model, thanks to a ten-fold larger data set, upgraded detectors and expected improvements in the theoretical understanding. This document summarises the physics reach of the HL-LHC in the realm of strong and electroweak interactions and top quark physics, and provides a glimpse of the potential of a possible further upgrade of the LHC to a 27 TeV $pp$ collider, the High-Energy LHC (HE-LHC), assumed to accumulate an integrated luminosity of 15 ab$^{-1}$. <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('1902.04070v3-abstract-full').style.display = 'none'; document.getElementById('1902.04070v3-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 December, 2019; <span class="has-text-black-bis has-text-weight-semibold">v1</span> submitted 11 February, 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">Report from Working Group 1 on the Physics of the HL-LHC, and Perspectives at the HE-LHC</span> </p> <p class="comments is-size-7"> <span class="has-text-black-bis has-text-weight-semibold">Report number:</span> CERN-LPCC-2018-03 </p> </li> <li class="arxiv-result"> <div class="is-marginless"> <p class="list-title is-inline-block"><a href="https://arxiv.org/abs/1409.3460">arXiv:1409.3460</a> <span>&nbsp;[<a href="https://arxiv.org/pdf/1409.3460">pdf</a>, <a href="https://arxiv.org/ps/1409.3460">ps</a>, <a href="https://arxiv.org/format/1409.3460">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="High Energy Physics - Phenomenology">hep-ph</span> </div> </div> <p class="title is-5 mathjax"> Combined measurements of the properties of the Higgs boson using the ATLAS detector </p> <p class="authors"> <span class="search-hit">Authors:</span> <a href="/search/hep-ph?searchtype=author&amp;query=Bella%2C+L+A">L. Aperio Bella</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="1409.3460v1-abstract-short" style="display: inline;"> The combined measurement of the mass, couplings and spin-CP properties of the recently discovered Higgs boson obtained with the ATLAS detector using up to $25$ fb$^{-1}$ of $7$ TeV and $8$ TeV $pp$ collision data is reviewed. </span> <span class="abstract-full has-text-grey-dark mathjax" id="1409.3460v1-abstract-full" style="display: none;"> The combined measurement of the mass, couplings and spin-CP properties of the recently discovered Higgs boson obtained with the ATLAS detector using up to $25$ fb$^{-1}$ of $7$ TeV and $8$ TeV $pp$ collision data is reviewed. <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('1409.3460v1-abstract-full').style.display = 'none'; document.getElementById('1409.3460v1-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> 11 September, 2014; <span class="has-text-black-bis has-text-weight-semibold">originally announced</span> September 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">6 pages, 4 figures</span> </p> <p class="comments is-size-7"> <span class="has-text-black-bis has-text-weight-semibold">Report number:</span> ATL-PHYS-PROC-2014-127 </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"> 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