CERN Accelerating science

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002655225 0248_ $$aoai:cds.cern.ch:2655225$$pcerncds:FULLTEXT$$pcerncds:CERN:FULLTEXT$$pcerncds:CERN
002655225 037__ $$9arXiv$$aarXiv:1901.09829$$chep-ex
002655225 035__ $$9arXiv$$aoai:arXiv.org:1901.09829
002655225 035__ $$9Inspire$$aoai:inspirehep.net:1717281$$d2023-06-29T03:10:00Z$$h2023-06-30T02:00:13Z$$mmarcxml$$ttrue$$uhttps://inspirehep.net/api/oai2d
002655225 035__ $$9Inspire$$a1717281
002655225 041__ $$aeng
002655225 100__ $$aAihara, Hiroaki$$uTokyo U.$$vU. Tokyo
002655225 245__ $$9arXiv$$aThe International Linear Collider. A Global Project
002655225 269__ $$c2019-01-28
002655225 260__ $$c2019
002655225 300__ $$a15 p
002655225 520__ $$9arXiv$$aA large, world-wide community of physicists is working to realise an exceptional physics program of energy-frontier, electron-positron collisions with the International Linear Collider (ILC). This program will begin with a central focus on high-precision and model-independent measurements of the Higgs boson couplings. This method of searching for new physics beyond the Standard Model is orthogonal to and complements the LHC physics program. The ILC at 250 GeV will also search for direct new physics in exotic Higgs decays and in pair-production of weakly interacting particles. Polarised electron and positron beams add unique opportunities to the physics reach. The ILC can be upgraded to higher energy, enabling precision studies of the top quark and measurement of the top Yukawa coupling and the Higgs self-coupling. The key accelerator technology, superconducting radio-frequency cavities, has matured. Optimised collider and detector designs, and associated physics analyses, were presented in the ILC Technical Design Report, signed by 2400 scientists. There is a strong interest in Japan to host this international effort. A detailed review of the many aspects of the project is nearing a conclusion in Japan. Now the Japanese government is preparing for a decision on the next phase of international negotiations, that could lead to a project start within a few years. The potential timeline of the ILC project includes an initial phase of about 4 years to obtain international agreements, complete engineering design and prepare construction, and form the requisite international collaboration, followed by a construction phase of 9 years.
002655225 540__ $$3preprint$$aarXiv nonexclusive-distrib 1.0$$uhttp://arxiv.org/licenses/nonexclusive-distrib/1.0/
002655225 65017 $$2arXiv$$aphysics.ins-det
002655225 65017 $$2SzGeCERN$$aDetectors and Experimental Techniques
002655225 65017 $$2arXiv$$aphysics.acc-ph
002655225 65017 $$2SzGeCERN$$aAccelerators and Storage Rings
002655225 65017 $$2arXiv$$ahep-ex
002655225 65017 $$2SzGeCERN$$aParticle Physics - Experiment
002655225 690C_ $$aCERN
002655225 690C_ $$aPREPRINT
002655225 700__ $$aBagger, Jonathan$$uTRIUMF$$vTriumf
002655225 700__ $$aBambade, Philip$$uOrsay, LAL$$vLAL-Orsay/CNRS,
002655225 700__ $$aBarish, Barry$$uCaltech$$vCaltech,
002655225 700__ $$aBehnke, Ties$$uDESY$$vDESY
002655225 700__ $$aBellerive, Alain$$uCarleton U.$$vCarleton U.,
002655225 700__ $$aBerggren, Mikael$$uDESY$$vDESY
002655225 700__ $$aBrau, James$$uOregon U.$$vU. Oregon,
002655225 700__ $$aBreidenbach, Martin$$uSLAC$$vSLAC,
002655225 700__ $$aBozovic-Jelisavcic, Ivanka$$uVINCA Inst. Nucl. Sci., Belgrade$$vINN VINCA, Belgrade,
002655225 700__ $$aBurrows, Philip$$uOxford U.$$vOxford U.,
002655225 700__ $$aCaccia, Massimo$$uInsubria U., Como$$vU. Insubria,
002655225 700__ $$aColas, Paul$$uIRFU, Saclay$$vCEA/Irfu, U. Paris-Saclay,
002655225 700__ $$aDenisov, Dmitri$$uFermilab$$vFermilab,
002655225 700__ $$aEigen, Gerald$$uBergen U.$$vU. Bergen,
002655225 700__ $$aEvans, Lyn$$uCERN$$vCERN,
002655225 700__ $$aFaus-Golfe, Angeles$$uOrsay, LAL$$vLAL-Orsay/CNRS,
002655225 700__ $$aFoster, Brian$$uOxford U.$$uDESY$$vOxford U.,$$vDESY
002655225 700__ $$aFujii, Keisuke$$uKEK, Tsukuba$$vKEK,
002655225 700__ $$aFuster, Juan$$uValencia U., IFIC$$vIFIC, U. Valencia-CSIC,
002655225 700__ $$aGaede, Frank$$uDESY$$vDESY
002655225 700__ $$aGao, Jie$$uSerpukhov, IHEP$$vIHEP,
002655225 700__ $$aGrannis, Paul$$uYITP, Stony Brook$$vStony Brook U.,
002655225 700__ $$aGrojean, Christophe$$uDESY$$vDESY
002655225 700__ $$aHutton, Andrew$$uJefferson Lab$$vJefferson Lab,
002655225 700__ $$aIdzik, Marek$$uAGH-UST, Cracow$$vAGH, Kraków,
002655225 700__ $$aJeremie, Andrea$$uAnnecy, LAPP$$vLAPP/CNRS,
002655225 700__ $$aKawagoe, Kiyotomo$$uKyushu U., Fukuoka (main)$$vKyushu U.,
002655225 700__ $$aKomamiya, Sachio$$uWaseda U.$$uTokyo U.$$vWaseda U.,$$vU. Tokyo
002655225 700__ $$aLesiak, Tadeusz$$uUnlisted, PL$$vIFJPAN, Kraków,
002655225 700__ $$aLevy, Aharon$$uTel Aviv U.$$vTel Aviv U.,
002655225 700__ $$aList, Benno$$uDESY$$vDESY
002655225 700__ $$aList, Jenny$$uDESY$$vDESY
002655225 700__ $$aMichizono, Shinichiro$$uKEK, Tsukuba$$vKEK,
002655225 700__ $$aMiyamoto, Akiya$$uKEK, Tsukuba$$vKEK,
002655225 700__ $$aMnich, Joachim$$uDESY$$vDESY
002655225 700__ $$aMontgomery, Hugh$$uJefferson Lab$$vJefferson Lab,
002655225 700__ $$aMurayama, Hitoshi$$uUC, Berkeley$$vU. California, Berkeley,
002655225 700__ $$aNapoly, Olivier$$uIRFU, Saclay$$vCEA/Irfu, U. Paris-Saclay,
002655225 700__ $$aOkada, Yasuhiro$$uKEK, Tsukuba$$vKEK,
002655225 700__ $$aPagani, Carlo$$uINFN, Italy$$vINFN,
002655225 700__ $$aPeskin, Michael$$uSLAC$$vSLAC,
002655225 700__ $$aPoeschl, Roman$$uOrsay, LAL$$vLAL-Orsay/CNRS,
002655225 700__ $$aRichard, Francois$$uOrsay, LAL$$vLAL-Orsay/CNRS,
002655225 700__ $$aRobson, Aidan$$uGlasgow U.$$vU. Glasgow,
002655225 700__ $$aSchoerner-Sadenius, Thomas$$uDESY$$vDESY
002655225 700__ $$aStanitzki, Marcel$$uDESY$$vDESY
002655225 700__ $$aStapnes, Steinar$$uCERN$$vCERN,
002655225 700__ $$aStrube, Jan$$uUnlisted$$uOregon U.$$vPNNL,$$vU. Oregon,
002655225 700__ $$aSuzuki, Atsuto$$uIwate U.$$vIwate Prefecture U.,
002655225 700__ $$aTian, Junping$$uTokyo U.$$vU. Tokyo
002655225 700__ $$aTitov, Maksym$$uIRFU, Saclay$$vCEA/Irfu, U. Paris-Saclay,
002655225 700__ $$aVos, Marcel$$uValencia U., IFIC$$vIFIC, U. Valencia-CSIC,
002655225 700__ $$aWalker, Nicholas$$uDESY$$vDESY
002655225 700__ $$aWeise, Hans$$uDESY$$vDESY
002655225 700__ $$aWhite, Andrew$$uTexas U., Arlington$$vU. Texas, Arlington,
002655225 700__ $$aWilson, Graham$$uKansas U.$$vU. Kansas,
002655225 700__ $$aWinter, Marc$$uStrasbourg, IPHC$$vIPHC/CNRS,
002655225 700__ $$aYamada, Sakue$$uKEK, Tsukuba$$uTokyo U.$$vKEK,$$vU. Tokyo
002655225 700__ $$aYamamoto, Akira$$uKEK, Tsukuba$$vKEK,
002655225 700__ $$aYamamoto, Hitoshi$$uTohoku U.$$vU. Tohoku
002655225 700__ $$aYamashita, Satoru$$uTokyo U.$$vU. Tokyo
002655225 710__ $$gLinear Collider Collaboration
002655225 8564_ $$81460449$$s194650$$uhttp://cds.cern.ch/record/2655225/files/CountriesInstitutes.png$$y00000 Detailed list of signatories of the ILC Technical Design Report covering 2400 signatories, 48 countries and 392 Institutes/Universities.
002655225 8564_ $$81460450$$s1654$$uhttp://cds.cern.ch/record/2655225/files/ILD.png$$y00004 The ILD detector concept.
002655225 8564_ $$81460451$$s11363$$uhttp://cds.cern.ch/record/2655225/files/ModelindepSummary.png$$y00001 Projected Higgs boson coupling uncertainties for the ILC program at 250~GeV and an energy upgrade to 500~GeV, using the highly model-independent analysis presented in \cite{Barklow:2017suo}. This analysis makes use of data on $\ee\to W^+W^-$ in addition to Higgs boson observables and also incorporates projected LHC results, as described in the text. Results are obtained assuming integrated luminosities of $2\,{\mathrm{ab}}^{-1}$ at 250~GeV and $4\,{\mathrm{ab}}^{-1}$ at 500~GeV. All estimates of uncertainties are derived from full detector simulation. Note that the projected uncertainties in the Higgs couplings to $Z\gamma$, $\mu\mu$, $tt$, and the self-coupling are divided by the indicated factors to fit on the scale of this plot. The scenario S1* refers to analyses with our current understanding; the scenario S2* refers to more optimistic assumptions in which experimental errors decrease with experience.  A full explanation of the analysis and assumptions underlying these estimates is given in \cite{ILCforESS}.
002655225 8564_ $$81460452$$s11398$$uhttp://cds.cern.ch/record/2655225/files/ModeldepSummary.png$$y00005 Projected Higgs boson coupling uncertainties for the LHC and ILC using the model-dependent assumptions appropriate to the LHC Higgs coupling fit.  The dark- and light-red bars represent the projections in the scenarios S1 and S2 presented in \cite{Yellow,CMSYellow}. The scenario S1 refers to analyses with our current understanding; the scenario S2 refers to more optimistic assumptions in which experimental errors decrease with experience. The dark- and light-green bars represent the projections in the ILC scenarios in similar S1 and S2 scenarios defined in \cite{ILCforESS}. The dark- and light-blue bars show the projections for scenarios S1 and S2 when data from the 500~GeV run of the ILC is included. The same integrated luminosities are assumed as for Figure \ref{fig:ILCmodelindep}. The projected uncertainties in the Higgs couplings to $\mu\mu$, $tt$, and the self-coupling are divided by the indicated factors to fit on the scale of this plot.
002655225 8564_ $$81460453$$s445477$$uhttp://cds.cern.ch/record/2655225/files/WorldSignatoriesTDR.png$$y00003 World wide map distribution of signatories supporting the ILC Technical Design Report.
002655225 8564_ $$81460454$$s1471342$$uhttp://cds.cern.ch/record/2655225/files/1901.09829.pdf$$yFulltext
002655225 8564_ $$81460455$$s180130$$uhttp://cds.cern.ch/record/2655225/files/Cost.png$$y00007 Costs of the ILC250 project in ILCU as evaluated by the Linear Collider Collaboration (LCC), converted to JPY and re-evaluated by KEK, and summarised in the MEXT ILC Advisory Panel report, in July, 2018.
002655225 8564_ $$81460456$$s2829$$uhttp://cds.cern.ch/record/2655225/files/SiD.png$$y00002 The SiD detector concept.
002655225 8564_ $$81460457$$s458327$$uhttp://cds.cern.ch/record/2655225/files/ttbar_event_ILD.png$$y00008 Fully simulated and reconstructed $t\bar t$-event in the ILD detector, showing the individually reconstructed neutral and charged particles. The colour code presents the particle flow algorithm reconstruction without reference to the Monte Carlo generator information.
002655225 8564_ $$81460458$$s31573$$uhttp://cds.cern.ch/record/2655225/files/TDR-machine-layout-cartoon-staged-mirror.png$$y00006 Schematic layout of the ILC in the $250\,{\mathrm{GeV}}$ staged configuration.
002655225 8564_ $$81486806$$s1501745$$uhttp://cds.cern.ch/record/2655225/files/fermilab-pub-19-043.pdf$$yFulltext
002655225 960__ $$a11
002655225 980__ $$aPREPRINT