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Related papers: Snowmass 2013 Computing Frontier: Accelerator Scie…

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This writeup summarizes the work of the Topical Working Group 7 of the Instrumentation Frontier group of the Snowmass 2021 process. Group 'IF07' dealt with issues pertaining to ASICs and Readout Electronics. The community efforts as part of…

Instrumentation and Detectors · Physics 2022-10-03 Gabriella Carini , Mitch Newcomer , John Parsons

Snowmass is a US long-term planning study for the high-energy community by the American Physical Society's Division of Particles and Fields. For its simulation studies, opportunistic resources are harnessed using the Open Science Grid…

High Energy Physics - Experiment · Physics 2013-10-03 A. Avetisyan , S. Bhattacharya , M. Narain , S. Padhi , J. Hirschauer , T. Levshina , P. McBride , C. Sehgal , M. Slyz , M. Rynge , S. Malik , J. Stupak

This paper provides an overview of experiments and facilities for accelerator-based dark matter searches as part of the US Community Study on the Future of Particle Physics (Snowmass 2021). Companion white papers to this paper present the…

This report summarizes the envisioned research activities as gathered from the Snowmass 2021 CF5 working group concerning Dark Energy and Cosmic Acceleration: Cosmic Dawn and Before. The scientific goals are to study inflation and to search…

This report describes the studies performed for the Snowmass "Top algorithms and detectors" High Energy Frontier Study Group.

High Energy Physics - Phenomenology · Physics 2013-10-04 R. Calkins , S. Chekanov , J. Conway , J. Dolen , R. Erbacher , J. Pilot , R. Poschl , S. Rappoccio , Z. Sullivan , B. Tweedie

The fundamental nature of Dark Matter is a central theme of the Snowmass 2021 process, extending across all frontiers. In the last decade, advances in detector technology, analysis techniques and theoretical modeling have enabled a new…

Report of the CF-3 Working Group at Community Planning Study "Snowmass-2013".

High Energy Physics - Phenomenology · Physics 2013-11-01 Alexander Kusenko , Leslie J. Rosenberg

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…

Physics and Society · Physics 2022-10-05 Farah Fahim , Alex Murokh , Koji Yoshimura

As part of the Snowmass process, the Cosmic Frontier WIMP Direct Detection subgroup (CF1) has drawn on input from the Cosmic Frontier and the broader Particle Physics community to produce this document. The charge to CF1 was (a) to…

Hardware accelerators are available on the Cloud for enhanced analytics. Next generation Clouds aim to bring enhanced analytics using accelerators closer to user devices at the edge of the network for improving Quality-of-Service by…

Distributed, Parallel, and Cluster Computing · Computer Science 2018-10-16 Blesson Varghese , Carlos Reano , Federico Silla

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.

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 4, on the Cosmic Frontier, discusses the…

We summarize progress made in theoretical astrophysics and cosmology over the past decade and areas of interest for the coming decade. This Report is prepared as the TF09 "Astrophysics and Cosmology" topical group summary for the Theory…

High Energy Physics - Phenomenology · Physics 2022-09-16 Daniel Green , Joshua T. Ruderman , Benjamin R. Safdi , Jessie Shelton , Ana Achúcarro , Peter Adshead , Yashar Akrami , Masha Baryakhtar , Daniel Baumann , Asher Berlin , Nikita Blinov , Kimberly K. Boddy , Malte Buschmann , Giovanni Cabass , Robert Caldwell , Emanuele Castorina , Thomas Y. Chen , Xingang Chen , William Coulton , Djuna Croon , Yanou Cui , David Curtin , Francis-Yan Cyr-Racine , Christopher Dessert , Keith R. Dienes , Patrick Draper , Peizhi Du , Sebastian A. R. Ellis , Rouven Essig , Raphael Flauger , Chee Sheng Fong , Joshua W. Foster , Jacopo Fumagalli , Keisuke Harigaya , Shunsaku Horiuchi , Mikhail M. Ivanov , Yonatan Kahn , Simon Knapen , Rebecca K. Leane , Hayden Lee , Erik W. Lentz , Matthew Lewandowski , Mariangela Lisanti , Andrew J. Long , Marilena Loverde , Azadeh Maleknejad , Liam McAllister , Samuel D. McDermott , Robert McGehee , P. Daniel Meerburg , Joel Meyers , Azadeh Moradinezhad Dizgah , Moritz Münchmeyer , Nadav Joseph Outmezguine , Enrico Pajer , Gonzalo A. Palma , Aditya Parikh , Jong-Chul Park , Annika H. G. Peter , Guilherme L. Pimentel , Sébastien Renaux-Petel , Nicholas L. Rodd , Bibhushan Shakya , Gary Shiu , Eva Silverstein , Marko Simonovic , Rajeev Singh , Charlotte Sleight , Volodymyr Takhistov , Philip Tanedo , Massimo Taronna , Brooks Thomas , Natalia Toro , Yu-Dai Tsai , Edoardo Vitagliano , Mark Vogelsberger , Benjamin Wallisch , Benjamin D. Wandelt , Risa H. Wechsler , Christoph Weniger , W. L. Kimmy Wu , Weishuang Linda Xu , Masaki Yamada , Hai-Bo Yu , Zhengkang Zhang , Yi-Ming Zhong , Kathryn Zurek

The fundamental nature of Dark Matter is a central theme of the Snowmass 2021 process, extending across all Frontiers. In the last decade, advances in detector technology, analysis techniques and theoretical modeling have enabled a new…

This document represents the response of the Intensity Frontier Neutrino Working Group to the Snowmass charge. We summarize the current status of neutrino physics and identify many exciting future opportunities for studying the properties…

High Energy Physics - Experiment · Physics 2013-10-17 A. de Gouvea , K. Pitts , K. Scholberg , G. P. Zeller , J. Alonso , A. Bernstein , M. Bishai , S. Elliott , K. Heeger , K. Hoffman , P. Huber , L. J. Kaufman , B. Kayser , J. Link , C. Lunardini , B. Monreal , J. G. Morfin , H. Robertson , R. Tayloe , N. Tolich , K. Abazajian , T. Akiri , C. Albright , J. Asaadi , K. S Babu , A. B. Balantekin , P. Barbeau , M. Bass , A. Blake , A. Blondel , E. Blucher , N. Bowden , S. J. Brice , A. Bross , B. Carls , F. Cavanna , B. Choudhary , P. Coloma , A. Connolly , J. Conrad , M. Convery , R. L. Cooper , D. Cowen , H. da Motta , T. de Young , F. Di Lodovico , M. Diwan , Z. Djurcic , M. Dracos , S. Dodelson , Y. Efremenko , T. Ekelof , J. L. Feng , B. Fleming , J. Formaggio , A. Friedland , G. Fuller , H. Gallagher , S. Geer , M. Gilchriese , M. Goodman , D. Grant , G. Gratta , C. Hall , F. Halzen , D. Harris , M. Heffner , R. Henning , J. L. Hewett , R. Hill , A. Himmel , G. Horton-Smith , A. Karle , T. Katori , E. Kearns , S. Kettell , J. Klein , Y. Kim , Y. K. Kim , Yu. Kolomensky , M. Kordosky , Yu. Kudenko , V. A. Kudryavtsev , K. Lande , K. Lang , R. Lanza , K. Lau , H. Lee , Z. Li , B. R. Littlejohn , C. J. Lin , D. Liu , H. Liu , K. Long , W. Louis , K. B. Luk , W. Marciano , C. Mariani , M. Marshak , C. Mauger , K. T. McDonald , K. McFarland , R. McKeown , M. Messier , S. R. Mishra , U. Mosel , P. Mumm , T. Nakaya , J. K. Nelson , D. Nygren , G. D. Orebi Gann , J. Osta , O. Palamara , J. Paley , V. Papadimitriou , S. Parke , Z. Parsa , R. Patterson , A. Piepke , R. Plunkett , A. Poon , X. Qian , J. Raaf , R. Rameika , M. Ramsey-Musolf , B. Rebel , R. Roser , J. Rosner , C. Rott , G. Rybka , H. Sahoo , S. Sangiorgio , D. Schmitz , R. Shrock , M. Shaevitz , N. Smith , M. Smy , H. Sobel , P. Sorensen , A. Sousa , J. Spitz , T. Strauss , R. Svoboda , H. A. Tanaka , J. Thomas , X. Tian , R. Tschirhart , C. Tully , K. Van Bibber , R. G. Van de Water , P. Vahle , P. Vogel , C. W. Walter , D. Wark , M. Wascko , D. Webber , H. Weerts , C. White , H. White , L. Whitehead , R. J. Wilson , L. Winslow , T Wongjirad , E. Worcester , M. Yokoyama , J. Yoo , E. D. Zimmerman

This report summarizes the work of the Computational Frontier topical group on end user analysis for Snowmass 2021. End User Analysis refers to the extraction of physics results from reconstructed and simulated experimental data. High…

Computational Physics · Physics 2022-09-30 Gavin S. Davies , Peter Onyisi , Amy Roberts