English
Related papers

Related papers: Snowmass2021 Theory Frontier: Theory Meets the Lab

200 papers

We reiterate that there is significant complementarity between low-energy experiments and high-energy colliders in exploring new physics associated with neutrino properties and their mass generation mechanisms. Signals of the new physics in…

High Energy Physics - Phenomenology · Physics 2022-03-14 Tao Han , Jiajun Liao , Hongkai Liu , Danny Marfatia , Richard Ruiz

Next-generation tests of fundamental physics and cosmology using large scale structure require measurements over large volumes of the Universe, including high redshifts inaccessible to present-day surveys. Line intensity mapping, an…

Cosmology and Nongalactic Astrophysics · Physics 2022-03-15 Kirit S. Karkare , Azadeh Moradinezhad Dizgah , Garrett K. Keating , Patrick Breysse , Dongwoo T. Chung

The data storage and data management needs are summarized for the energy frontier, intensity frontier, cosmic frontier, lattice field theory, perturbative QCD and accelerator science. The outlook for data storage technologies and costs is…

High Energy Physics - Experiment · Physics 2013-11-20 Michelle Butler , Richard Mount , Mike Hildreth

This whitepaper focuses on the astrophysical systematics which are encountered in dark matter searches. Oftentimes in indirect and also in direct dark matter searches, astrophysical systematics are a major limiting factor to sensitivity to…

Quantum computing will play a pivotal role in the High Energy Physics (HEP) science program over the early parts of the 21$^{st}$ Century, both as a major expansion of our capabilities across the Computational Frontier, and in synthesis…

Quantum Physics · Physics 2022-09-15 Travis S. Humble , Gabriel N. Perdue , Martin J. Savage

The current understanding of dark matter comes largely from measurements of the total matter content in the universe, from the distribution of gravitating matter on very large scales, and from rotation curves and velocity dispersions on…

Quantum Sensors offer great potential for providing enhanced sensitivity in high energy physics experiments. In this report we provide a summary of key quantum sensors technologies - interferometers, optomechanics, and clocks; spin…

Instrumentation and Detectors · Physics 2022-09-22 Thomas Cecil , Kent Irwin , Reina Maruyama , Matt Pyle , Silvia Zorzetti

Machine learning (ML) techniques are enjoying rapidly increasing adoption. However, designing and implementing the systems that support ML models in real-world deployments remains a significant obstacle, in large part due to the radically…

Contribution from the USQCD Collaboration to the Proceedings of the US Community Study on the Future of Particle Physics (Snowmass 2021).

This document is one of a series of whitepapers from the USQCD collaboration. Here, we discuss opportunities for lattice field theory research to make an impact on models of new physics beyond the Standard Model, including composite Higgs,…

I will propose a new way of advancing white dwarf research. Open science is a method of doing research that lets everyone who has something to say about the subject take part in the problem solving process. Already now, the amount of…

Instrumentation and Methods for Astrophysics · Physics 2012-10-03 Tommi Vornanen

This White Paper provides a supplement to the Snowmass Summary from CF1 (Cosmic Frontier WIMP Direct Detection). It was largely prepared during the August 2013 Community Planning Meeting and relies on information gathered from the larger…

High Energy Physics - Experiment · Physics 2013-11-18 J. Cooley , P. Cushman , E. W. Hoppe , J. L. Orrell , R. W. Schnee

This report summarizes the findings of the DPF Theory Panel which was formed with a goal of understanding the scientific problems and opportunities of the next decade, as well as the challenges involved in sustaining a first-class program…

High Energy Physics - Phenomenology · Physics 2014-01-28 M. Dine , K. Babu , C. Csaki , S. Dawson , L. Dixon , S. Gottlieb , J. Harvey , D. Whiteson

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 3, on the Energy Frontier, discusses the…

We present a summary of recent progress and remaining challenges in applying the methods and ideas of quantum information theory to the study of quantum field theory and quantum gravity. Important topics and themes include: entanglement…

High Energy Physics - Theory · Physics 2022-04-27 Thomas Faulkner , Thomas Hartman , Matthew Headrick , Mukund Rangamani , Brian Swingle

The combination of theory and simulation is necessary in the investigation of properties of complex systems where each method alone cannot do the task properly. Theory needs simulation to test ideas and to check approximations. Simulation…

Statistical Mechanics · Physics 2015-06-17 Hung T. Diep , Virgile Bocchetti , Danh-Tai Hoang , V. Thanh Ngo

The landscape of workflow systems for scientific applications is notoriously convoluted with hundreds of seemingly equivalent workflow systems, many isolated research claims, and a steep learning curve. To address some of these challenges…

Closing talk at Snowmass 2001: a summer study on the future of particle physics.

High Energy Physics - Phenomenology · Physics 2009-05-05 Chris Quigg

This report summarizes the work of the Energy Frontier Top Quark working group of the 2013 Community Summer Study (Snowmass).

High Energy Physics - Phenomenology · Physics 2013-11-11 K. Agashe , R. Erbacher , C. E. Gerber , K. Melnikov , R. Schwienhorst , A. Mitov , M. Vos , S. Wimpenny , J. Adelman , M. Baumgart , A. Garcia-Bellido , A. Loginov , A. Jung , M. Schulze , J. Shelton , N. Craig , M. Velasco , T. Golling , J. Hubisz , A. Ivanov , M. Perelstein , S. Chekanov , J. Dolen , J. Pilot , R. Pöschl , B. Tweedie , S. Alioli , B. Alvarez-Gonzalez , D. Amidei , T. Andeen , A. Arce , B. Auerbach , A. Avetisyan , M. Backovic , Y. Bai , M. Begel , S. Berge , C. Bernard , C. Bernius , S. Bhattacharya , K. Black , A. Blondel , K. Bloom , T. Bose , J. Boudreau , J. Brau , A. Broggio , G. Brooijmans , E. Brost , R. Calkins , D. Chakraborty , T. Childress , G. Choudalakis , V. Coco , J. S. Conway , C. Degrande , A. Delannoy , F. Deliot , L. Dell'Asta , E. Drueke , B. Dutta , A. Effron , K. Ellis , J. Erdmann , J. Evans , C. Feng , E. Feng , A. Ferroglia , K. Finelli , W. Flanagan , I. Fleck , A. Freitas , F. Garberson , R. Gonzalez Suarez , M. L. Graesser , N. Graf , Z. Greenwood , J. George , C. Group , A. Gurrola , G. Hammad , T. Han , Z. Han , U. Heintz , S. Hoeche , T. Horiguchi , I. Iashvili , A. Ismail , S. Jain , P. Janot , W. Johns , J. Joshi , A. Juste , T. Kamon , C. Kao , Y. Kats , A. Katz , M. Kaur , R. Kehoe , W. Keung , S. Khalil , A. Khanov , A. Kharchilava , N. Kidonakis , C. Kilic , N. Kolev , A. Kotwal , J. Kraus , D. Krohn , M. Kruse , A. Kumar , S. Lee , E. Luiggi , S. Mantry , A. Melo , D. Miller , G. Moortgat-Pick , M. Narain , N. Odell , Y. Oksuzian , M. Oreglia , A. Penin , Y. Peters , C. Pollard , S. Poss , H. B. Prosper S. Rappoccio , S. Redford , M. Reece , F. Rizatdinova , P. Roloff , R. Ruiz , M. Saleem , B. Schoenrock , C. Schwanenberger , T. Schwarz , K. Seidel , E. Shabalina , P. Sheldon , F. Simon , K. Sinha , P. Skands , P. Skubik , G. Sterman , D. Stolarski , J. Strube , J. Stupak , S. Su , M. Tesar , S. Thomas , E. Thompson , P. Tipton , E. Varnes , N. Vignaroli , J. Virzi , M. Vogel , D. Walker , K. Wang , B. Webber , J. D. Wells , S. Westhoff , D. Whiteson , M. Williams , S. Wu , U. Yang , H. Yokoya , H. Yoo , H. Zhang , N. Zhou , H. Zhu , J. Zupan

The analytic conformal bootstrap is an array of techniques to characterize, constrain, and solve strongly interacting quantum field theories using symmetries, causality, unitarity, and other general principles. In the last decade, bolstered…

High Energy Physics - Theory · Physics 2022-02-23 Thomas Hartman , Dalimil Mazac , David Simmons-Duffin , Alexander Zhiboedov