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相关论文: Report of the Instrumentation Frontier Working Gro…

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The Instrumentation Frontier was set up as a part of the Snowmass 2013 Community Summer Study to examine the instrumentation R&D needed to support particle physics research over the coming decade. This report summarizes the findings of the…

This report summarizes findings of the 2013 Snowmass Community Summer Study Instrumentation Frontier's subgroup on the Intensity Frontier. This report is directed at identifying instrumentation R&D needed to support particle physics…

高能物理 - 实验 · 物理学 2013-09-27 S. H. Kettell , R. A. Rameika , R. S. Tschirhart

HEP community leads and operates cutting-edge experiments for the DOE Office of Science which have challenging sensing, data processing, and computing requirements that far surpass typical industrial applications. To make necessary progress…

物理与社会 · 物理学 2022-10-05 Farah Fahim , Alex Murokh , Koji Yoshimura

These reports present the results of the 2013 Community Summer Study of the APS Division of Particles and Fields ("Snowmass 2013") on the future program of particle physics in the U.S. Chapter 8, on the Instrumentation Frontier, discusses…

高能物理 - 实验 · 物理学 2014-01-24 M. Demarteau , R. Lipton , H. Nicholson , I. Shipsey , D. Akerib , A. Albayrak-Yetkin , J. Alexander , J. Anderson , M. Artuso , D. Asner , R. Ball , M. Battaglia , C. Bebek , J. Beene , Y. Benhammou , E. Bentefour , M. Bergevin , A. Bernstein , B. Bilki , E. Blucher , G. Bolla , D. Bortoletto , N. Bowden , G. Brooijmans , K. Byrum , B. Cabrera , G. Cancelo , J. Carlstrom , B. Casey , C. Chang , J. Chapman , C. H. Chen , I. Childres , D. Christian , M. Convery , W. Cooper J. Corso , J. Cumalat , P. Cushman , C. Da Via , S. Dazeley , P. Debbins , G. Deptuch , S. Dhawan , V. Di Benedetto , B. DiGiovene , Z. Djurcic , S. Dye , A. Elagin , J. Estrada , H. Evans , E. Etzion , J. Fast , C. Ferretti , P. Fisher , B. Fleming , K. Francis , P. Friedman , H. Frisch , M. Garcia-Sciveres , C. Gatto , G. Geronim , G. Gilchriese , S. Golwala , C. Grant , A. Grillo , E. Grünendahl , P. Gorham , L. Guan , G. Gutierrez , C. Haber , J. Hall , G. Haller , C. Hast , U. Heintz , T. Hemmick , D. G. Hitlin , C. Hogan , M. Hohlmann , E. Hoppe , L. Hsu , M. Huffer , K. Irwin , F. Izraelevitch , G. Jennings , M. Johnson , A. Jung , H. Kagan , C. Kenney , S. Kettell , R. Khanna , V. Khristenko , F. Krennrich , K. Kuehn , R. Kutschke , J. Learned , A. T. Lee , D. Levin , T. Liu , A. T. K. Liu , D. Lissauer , J. Love , D. Lynn , D. MacFarlane , S. Magill , S. Majewski , J. Mans , J. Maricic , P. Marleau , A. Mazzacane , D. McKinsey , J. Mehl , A. Mestvirisvilli , S. Meyer , N. Mokhov , M. Moshe , A. Mukherjee , P. Murat , S. Nahn , M. Narain , P. Nadel-Turonski , M. Newcomer , K. Nishimura , D. Nygren , E. Oberla , Y. Onel , M. Oreglia , J. Orrell , J. Paley , A. Para , S. Parker , V. Polychronakos , S. Pordes , P. Privitera , A. Prosser , M. Pyle , J. Raaf , E. Ramberg , R. Rameika , B. Rebel , J. Repond , D. Reyna , L. Ristori , R. Rivera , A. Ronzhin , R. Rusack , J. Russ , A. Ryd , H. Sadrozinski , H. Sahoo , M. C. Sanchez , C. Sanzeni , S. Schnetzer , S. Seidel , A. Seiden , I. Schmidt , A. Shenai , T. Shutt , Y. Silver , W. Smith , D. Snowden-Ifft , A. Sonnenschein , D. Southwick , L. Spiegel , M. Stanitzki , S. Striganov , D. Su , R. Sumner , R. Svoboda , M. Sweany , R. Talaga , R. Tayloe , S. Tentindo , N. Terentiev , J. Thom-Levy , C. Thorn , J. Tiffenberg , W. Trischuk , R. Tschirhart , M. Turner , D. Underwood , L. Uplegger , J. Urheim , M. Vagins , K. Van Bibber , G. Varner , R. Varner , J. Va'vra , H. Von der Lippe , R. Wagner , S. Wagner , C. Weaverdyck , H. Wenzel , A. Weinstein , M. Wetstein , A. White , R. Wigman , P. Wilson , D. Winn , P. Winter , C. Woody , L. Xia , J. Q. Xie , Z. Ye , M. F. Yeh , T. Yetkin , J. H. Yoo , J. Yu , J. M. Yu , S. Zeller , J. L. Zhang , J. J. Zhu , B. Zhou , R. Y. Zhu , B. Zitzer

This report, as part of the 2021 Snowmass Process, summarizes the current status of collider physics at the Energy Frontier, the broad and exciting future prospects identified for the Energy Frontier, the challenges and needs of future…

The Photon Detectors Topical Group has identified two areas where focused R&D over the next decade could have a large impact in High Energy Physics Experiments. These areas described here are characterized by the convergence of a compelling…

高能物理 - 实验 · 物理学 2022-12-26 Carlos Escobar , Juan Estrada , Chris Rogan

Particle detectors making use of noble elements in gaseous, liquid, or solid phases are prevalent in neutrino and dark matter experiments and are also used to a lesser extent in collider-based particle physics experiments. These experiments…

Wireless techniques have developed extremely fast over the last decade and using them for data and power transmission in particle physics detectors is not science- fiction any more. During the last years several research groups have…

This report summarizes the recent progress and promising future directions in theoretical high-energy physics (HEP) identified within the Theory Frontier of the 2021 Snowmass Process.

The rapidly-developing intersection of machine learning (ML) with high-energy physics (HEP) presents both opportunities and challenges to our community. Far beyond applications of standard ML tools to HEP problems, genuinely new and…

计算物理 · 物理学 2022-09-19 Phiala Shanahan , Kazuhiro Terao , Daniel Whiteson

Tracking detectors are of vital importance for collider-based high energy physics (HEP) experiments. The primary purpose of tracking detectors is the precise reconstruction of charged particle trajectories and the reconstruction of…

仪器与探测器 · 物理学 2022-10-20 A. Affolder , A. Apresyan , S. Worm , M. Albrow , D. Ally , D. Ambrose , E. Anderssen , N. Apadula , P. Asenov , W. Armstrong , M. Artuso , A. Barbier , P. Barletta , L. Bauerdick , D. Berry , M. Bomben , M. Boscardin , J. Brau , W. Brooks , M. Breidenbach , J. Buckley , V. Cairo , R. Caputo , L. Carpenter , M. Centis-Vignali , M. Cerullo , A. Collu , F. Chlebana , G. -F. Dalla-Betta , M. Demarteau , G. Deptuch , K. Di Petrillo , G. D'Amen , A. Dragone , N. T. Fourches , M. Garcia-Sciveres , G. Giacomini , C. Gingu , N. Graf , C. Grace , S. Griso , L. Greiner , C. Haber , G. Haller , K. Harris , T. Heim , U. Heinz , R. Heller , M. T. Hedges , R. Herbst , M. R. Hoeferkamp , T. Holmes , S. E. Holland , S. -C. Hsu , R. Islam , M. Jadhav , S. Jindariani , S. Joosten , A. Jung , S. Karmarkar , C. Kenney , C. Kierans , J. Kim , S. Kim , S. Klein , A. Koshy , K. Krizka , A. Lai , L. Lee , L. Linssen , R. Lipton , T. Liu , C. Madrid , T. Mahajan , T. Markiewicz , B. Markovic , S. Mazza , M. Mazziotta , Y. Mei , P. Merkel , J. Metcalfe , Z. -E. Meziani , A. Minns , F. Moscatelli , P. Murat , J. Muth , B. Nachman , S. Nahn , M. Narain , E. A. Narayanan , T. Nelson , J. Nielsen , S. Oktyabrsky , J. Ott , F. R. Palomo , D. Passeri , R. Patti , T. Peltola , C. Pena , C. Peng , C. Renard , P. Reimer , C. Rogan , L. Rota , H. Sadrozinski , J. Segal , A. Schwartzman , B. Schumm , M. Scott , S. Seidel , A. Seiden , B. Sekely , X. Shi , E. Sichtermann , N. Sinev , J. Sonneveld , L. Spiegel , A. Steinhebel , D. Strom , D. M. S. Sultan , A. Sumant , V. Tokranov , A. Tricoli , W. Trischuk , A. Tumasyan , L. Uplegger , C. Vernieri , H. Wang , P. Wagenknecht , H. Weber , S. Xie , M. Yakimov , Z. Ye , C. Young , M. Zurek

Computing has become a major component of all particle physics experiments and in many areas of theoretical particle physics. Progress in HEP experiment and theory will require significantly more computing, software development, storage,…

高能物理 - 实验 · 物理学 2013-11-12 Gregory Bell , Michael Ernst

A wide range of quantum sensing technologies are rapidly being integrated into the experimental portfolio of the high energy physics community. Here we focus on sensing with atomic interferometers; mechanical devices read out with optical…

The physics goals of high luminosity particle accelerators, from LHC to HL-LHC and to the next generation of lepton colliders, have set quite stringent constraints on the future needs at the Instrumentation Frontier. Many technologies are…

仪器与探测器 · 物理学 2020-12-30 Maxim Titov

The Intensity Frontier (IF) is a primary focus of the U.S.-based particle physics program. It encompasses a large spectrum of physics, including quark flavor physics, charged lepton processes, neutrinos, baryon number violation, new light…

高能物理 - 实验 · 物理学 2013-10-28 B. Rebel , M. C. Sanchez , S. Wolbers

Detecting dark matter directly using sensitive underground detectors is one of the most promising ways to address the question of what is dark matter. The next generation underground experiments will search for dark matter in two…

高能物理 - 实验 · 物理学 2022-12-05 J. Cooley , S. Hertel , H. Lippincott , K. Ni , E. Pantic

This report summarizes the work of the Computational Frontier topical group on theoretical calculations and simulation for Snowmass 2021. We discuss the challenges, potential solutions, and needs facing six diverse but related topical areas…

计算物理 · 物理学 2022-09-20 Peter Boyle , Kevin Pedro , Ji Qiang

Powerful new observational facilities will come online over the next decade, enabling a number of discovery opportunities in the "Cosmic Frontier", which targets understanding of the physics of the early universe, dark matter and dark…

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