English
Related papers

Related papers: Snowmass2021 Theory Frontier: Theory Meets the Lab

200 papers

The Snowmass 2021 Accelerator Frontier topical group \# 6 on Advanced Accelerator Concepts, covers new R\&D concepts for particle acceleration, generation, and focusing. Based on community input, this report describes how leveraging these…

Accelerator Physics · Physics 2022-09-27 C. Geddes , M. Hogan , P. Musumeci , R. Assmann

Talk at the KITP Conference: Snowmass Theory Frontier - Feb. 23, 2022

Physics Education · Physics 2022-03-18 Howard Georgi

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 is the Snowmass 2021 Rare and Precision Frontier Report. The Rare Processes and Precision Measurements Frontier, referred to as the ``Rare and Precision Frontier", or RPF, encompasses searches for extremely rare processes or tiny…

High Energy Physics - Experiment · Physics 2022-11-18 Marina Artuso , Robert H. Bernstein , Alexey A. Petrov

This Snowmass2021 Contributed Paper addresses the role of the Particle Physics community in creating and fostering international connections in American education. It describes the pressing need to introduce students and faculty to the…

This is the working summary of the Accelerator Science working group of the Computing Frontier of the Snowmass meeting 2013. It summarizes the computing requirements to support accelerator technology in both Energy and Intensity Frontiers.

The decade since Snowmass 2013 has seen extraordinary progress of high energy physics research performed--or planned for--at underground facilities. Drs. T. Kajita and A.B. McDonald were awarded the 2015 Nobel Prize in Physics for the…

High Energy Physics - Experiment · Physics 2022-11-28 Laura Baudis , Jeter Hall , Kevin T. Lesko , John L. Orrell

What follows is a broad-brush overview of the recent synergistic interactions between mathematics and theoretical physics of quantum field theory and string theory. The discussion is forward-looking, suggesting potentially useful and…

High Energy Physics - Theory · Physics 2024-05-13 Ibrahima Bah , Daniel S. Freed , Gregory W. Moore , Nikita Nekrasov , Shlomo S. Razamat , Sakura Schafer-Nameki

The US particle physics community planning exercise (a.k.a. Snowmass) is organized every 7 to 9 years to provide a forum for discussions among the entire particle physics community to develop a scientific vision for the future of particle…

Accelerator Physics · Physics 2022-08-23 Stephen Gourlay , Tor Raubenheimer , Vladimir Shiltsev

We present an overview of future observational facilities that will significantly enhance our understanding of the fundamental nature of dark matter. These facilities span a range of observational techniques including optical/near-infrared…

The Snowmass 2021 Implementation Task Force has been established to evaluate the proposed future accelerator projects for performance, technology readiness, schedule, cost, and environmental impact. Corresponding metrics has been developed…

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

This report summarizes the findings of the CF1 Topical Subgroup to Snowmass 2021, which was focused on particle dark matter. One of the most important scientific goals of the next decade is to reveal the nature of dark matter (DM). To…

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…

Computational Physics · Physics 2022-09-20 Peter Boyle , Kevin Pedro , Ji Qiang

Computing plays a significant role in all areas of high energy physics. The Snowmass 2021 CompF4 topical group's scope is facilities R&D, where we consider "facilities" as the computing hardware and software infrastructure inside the data…

The wealth of experimental data collected at laboratory experiments suggests that there is some scale separation between the Standard Model (SM) and phenomena beyond the SM (BSM). New phenomena can manifest itself as small corrections to SM…

This roadmap presents the state-of-the-art, current challenges and near future developments anticipated in the thriving field of warm dense matter physics. Originating from strongly coupled plasma physics, high pressure physics and high…

A multi-TeV muon collider offers a spectacular opportunity in the direct exploration of the energy frontier. Offering a combination of unprecedented energy collisions in a comparatively clean leptonic environment, a high energy muon…

High Energy Physics - Experiment · Physics 2023-08-10 K. M. Black , S. Jindariani , D. Li , F. Maltoni , P. Meade , D. Stratakis , D. Acosta , R. Agarwal , K. Agashe , C. Aime , D. Ally , A. Apresyan , A. Apyan , P. Asadi , D. Athanasakos , Y. Bao , E. Barzi , N. Bartosik , L. A. T. Bauerdick , J. Beacham , S. Belomestnykh , J. S. Berg , J. Berryhill , A. Bertolin , P. C. Bhat , M. E. Biagini , K. Bloom , T. Bose , A. Bross , E. Brost , N. Bruhwiler , L. Buonincontri , D. Buttazzo , V. Candelise , A. Canepa , L. Carpenter , M. Casarsa , F. Celiberto , C. Cesarotti , G. Chachamis , Z. Chacko , P. Chang , S. V. Chekanov , T. Y. Chen , M. Chiesa , T. Cohen , M. Costa , N. Craig , A. Crivellin , C. Curatolo , D. Curtin , G. Da Molin , S. Dasu , A. de Gouvea , D. Denisov , R. Dermisek , K. F. Di Petrillo , T. Dorigo , J. M. Duarte , V. D. Elvira , R. Essig , P. Everaerts , J. Fan , M. Felcini , G. Fiore , D. Fiorina , M. Forslund , R. Franceschini , M. V. Garzelli , C. E. Gerber , L. Giambastiani , D. Giove , S. Guiducci , T. Han , K. Hermanek , C. Herwig , J. Hirschauer , T. R. Holmes , S. Homiller , L. A. Horyn , A. Ivanov , B. Jayatilaka , H. Jia , C. K. Jung , Y. Kahn , D. M. Kaplan , M. Kaur , M. Kawale , P. Koppenburg , G. Krintiras , K. Krizka , B. Kuchma , L. Lee , L. Li , P. Li , Q. Li , W. Li , R. Lipton , Z. Liu , S. Lomte , Q. Lu , D. Lucchesi , T. Luo , K. Lyu , Y. Ma , P. A. N. Machado , C. Madrid , D. J. Mahon , A. Mazzacane , N. McGinnis , C. McLean , B. Mele , F. Meloni , S. C. Middleton , R. K. Mishra , N. Mokhov , A. Montella , M. Morandin , S. Nagaitsev , F. Nardi , M. S. Neubauer , D. V. Neuffer , H. Newman , R. Ogaz , I. Ojalvo , I. Oksuzian , T. Orimoto , B. Ozek , K. Pachal , S. Pagan Griso , P. Panci , V. Papadimitriou , N. Pastrone , K. Pedro , F. Pellemoine , A. Perloff , D. Pinna , F. Piccinini , Marc-Andre Pleier , S. Posen , K. Potamianos , S. Rappoccio , M. Reece , L. Reina , A. Reinsvold Hall , C. Riccardi , L. Ristori , T. Robens , R. Ruiz , P. Sala , D. Schulte , L. Sestini , V. Shiltsev , P. Snopok , G. Stark , J. Stupak , S . Su , R. Sundrum , M. Swiatlowski , M. J. Syphers , A. Taffard , W. Thompson , Y. Torun , C. G. Tully , I. Vai , M. Valente , U. van Rienen , R. van Weelderen , G. Velev , N. Venkatasubramanian , L. Vittorio , C. Vuosalo , X. Wang , H. Weber , R. Wu , Y. Wu , A. Wulzer , K. Xie , S. Xie , R. Yohay , K. Yonehara , F. Yu , A. V. Zlobin , D. Zuliani , J. Zurita