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Submissions to the Snowmass 2021 Proceedings - Theory Frontier

Papers of general interest to this frontier

  • Luis A. Anchordoqui, A. Ariga, T. Ariga, et al. “The Forward Physics Facility: Sites, Experiments, and Physics Potential”, arXiv:2109.10905 [hep-ph] (pdf). (also under EF0, NF0, RF0, CF0)
  • Jonathan L. Feng, Felix Kling, Mary Hall Reno, Juan Rojo, Dennis Soldin, et al. ”The Forward Physics Facility at the High-Luminosity LHC“, arXiv:2203.05090 [hep-ex] (pdf). (also under EF0, NF0, RF0, CF0, AF0, IF0)
  • John Arrington, Joshua Barrow, Brian Batell, Robert Bernstein, Nikita Blinov, et al. ”Physics Opportunities for the Fermilab Booster Replacement”, arXiv:2203.03925 [hep-ph] (pdf). (also under NF0, RF0, AF0)
  • Patrick J. Fox, Sergo Jindariani, Vladimir Shiltsev. ”DIMUS: Super-Compact Dimuonium Spectroscopy Collider at Fermilab“, arXiv:2203.07144 [hep-ex] (pdf). (also under RF0, AF0)
  • Jorge De Blas, Dario Buttazzo, Rodolfo Capdevilla, David Curtin, Roberto Franceschini, et al. ”The physics case of a 3 TeV muon collider stage”, arXiv:2203.07261 [hep-ph] (pdf). (also under EF0)
  • Chiara Aimè, Aram Apyan, Mohammed Attia Mahmoud, Nazar Bartosik, Fabian Batsch, Alessandro Bertolin, et al. ”Muon Collider Physics Summary”, arXiv:2203.07256 [hep-ph] (pdf). (also under EF0)
  • G. Bernardi, E. Brost, D. Denisov, G. Landsberg, M. Aleksa, D. d'Enterria, P. Janot, M.L. Mangano, et al. “The Future Circular Collider: a Summary for the US 2021 Snowmass Process”, arXiv:2203.06520 [hep-ex] (pdf). (also under EF0, NF0, RF0, AF0, IF0)
  • P. C. Bhat, S. Jindariani, G. Ambrosio, G. Apollinari, S. Belomestnykh, et al. ”Future Collider Options for the US“, arXiv:2203.08088 [hep-ex] (pdf). (also under EF0, AF0)
  • Prateek Agrawal, Cari Cesarotti, Andreas Karch, Rashmish K. Mishra, Lisa Randall, Raman Sundrum. ”Warped Compactifications in Particle Physics, Cosmology and Quantum Gravity”, arXiv:2203.07533 [hep-th] (pdf).
  • Alexander Aryshev, Ties Behnke, Mikael Berggren, James Brau, Nathaniel Craig, et al. ”The International Linear Collider”, arXiv:2203.07622 [physics.acc-ph] (pdf). (also at EF0, NF03, RF06, CF01, AF03, IF0, CommF07)
  • Emanuela Barzi, S. James Gates Jr., Roxanne Springer. ”In Search of Excellence and Equity in Physics”, arXiv:2203.10393 [physics.soc-ph] (pdf). (also under EF0, NF0, RF0, CF0, AF01, IF0, CompF0, UF0, CommF0)
  • R. Abdul Khalek, U. D'Alesio, M. Arratia, A. Bacchetta, M. Battaglieri, et al. ”Electron Ion Collider for High Energy Physics“, arXiv:2203.13199 [hep-ph] (pdf). (also under EF07, AF0, IF0)
  • J. M. Campbell, M. Diefenthaler, T. J. Hobbs, S. Höche, J. Isaacson, F. Kling, et al. ”Event Generators for High-Energy Physics Experiments”, arXiv:2203.11110 [hep-ph] (pdf). (also under EF0, NF0, CF0, CompF02)
  • Asher Berlin, Sergey Belomestnykh, Diego Blas, Daniil Frolov, Anthony J. Brady, Caterina Braggio, et al. ”Searches for New Particles, Dark Matter, and Gravitational Waves with SRF Cavities”, arXiv:2203.12714 [hep-ph] (pdf). (also under CF0, IF01, CompF06)
  • Huajie Cheng, Wen Han Chiu, Yaquan Fang, Yu Gao, Jiayin Gu, Gang Li, Tianjun Li, et al. “The Physics potential of the CEPC”, arXiv:2205.08553 [hep-ph] (pdf). (also under EF0, AF0)
  • Thomas Roser, Reinhard Brinkmann, Sarah Cousineau, Dmitri Denisov, Spencer Gessner, Steve Gourlay, Philippe Lebrun, Meenakshi Narain, Katsunobu Oide, Tor Raubenheimer, John Seeman, Vladimir Shiltsev, Jim Strait, Marlene Turner, Lian-Tao Wang. “Report of the Snowmass 2021 Collider Implementation Task Force”, arXiv:2208.06030 [physics.acc-ph] (pdf). (also under EF0, AF0)
  • Emanuela Barzi, Simonetta liuti, Christine Nattrass, Roxanne Springer. “How Community Agreements Can Improve Climate in Physics”, arXiv:2209.06755 [physics.soc-ph] (pdf). (also under EF0, NF0, RF0, CF0, AF01, IF0, CompF0, UF0, CommF0)
  • Alain Blondel, Patrick Janot, Niloufar Alipour Tehrani, Patrizia Azzi, et al. “FCC-ee: Your Questions Answered”, arXiv:1906.02693 [hep-ph] (pdf). (also under EF0, NF0, RF0, AF0)

TF01: String theory, quantum gravity, and black holes

  • Per Berglund, De-Chang Dai, Douglas Edmonds, et al. “Quantum Gravity and Phenomenology: Dark Matter, Dark Energy, Vacuum Selection, Emergent Spacetime, and Wormholes”, arXiv:2202.05104 [hep-th] (pdf).
  • Per Berglund, Laurent Freidel, Tristan Hubsch, et al. “Infrared Properties of Quantum Gravity: UV/IR Mixing, Gravitizing the Quantum – Theory and Observation”, arXiv:2202.06890 [hep-th] (pdf).
  • Raphael Bousso, Xi Dong, Netta Engelhardt, Thomas Faulkner, Thomas Hartman, Stephen H. Shenker, Douglas Stanford. “Quantum Aspects of Black Holes and the Emergence of Spacetime”, arXiv:2201.03096 [hep-th] (pdf).
  • Prateek Agrawal, Cari Cesarotti, Andreas Karch, Rashmish K. Mishra, Lisa Randall, Raman Sundrum. ”Warped Compactifications in Particle Physics, Cosmology and Quantum Gravity”, arXiv:2203.07533 [hep-th] (pdf).
  • Raphael Flauger, Victor Gorbenko, Austin Joyce, Liam McAllister, Gary Shiu, Eva Silverstein. ”Cosmology at the Theory Frontier”, arXiv:2203.07629 [hep-th] (pdf). (also relevant to TF09)
  • Jan de Boer, Bianca Dittrich, Astrid Eichhorn, Steven B. Giddings, Steffen Gielen, et al. “Frontiers of Quantum Gravity: shared challenges, converging directions”, arXiv:2207.10618 [hep-th] (pdf). (also under CF07)

TF02: Effective field theory techniques

  • Tomas Brauner, Sean A. Hartnoll, Pavel Kovtun, Hong Liu, Márk Mezei, Alberto Nicolis, Riccardo Penco, Shu-Heng Shao, Dam Thanh Son. ”Effective Field Theories for Condensed Matter Systems”, arXiv:2203.10110 [hep-th] (pdf).

TF03: Conformal field theory and formal quantum field theory

  • Ibrahima Bah, Daniel Freed, Gregory W. Moore, Nikita Nekrasov, Shlomo S. Razamat, Sakura Schäfer-Nameki. ”Physical Mathematics 2021”, arXiv:2203.05078 [hep-th] (pdf).
  • Clay Cordova, Thomas T. Dumitrescu, Kenneth Intriligator, Shu-Heng Shao. “Generalized Symmetries in Quantum Field Theory and Beyond”, arXiv:2205.09545 [hep-th] (pdf).

TF04: Scattering amplitudes

  • Jacob L. Bourjaily, Johannes Broedel, Ekta Chaubey, Claude Duhr, Hjalte Frellesvig, et al. ”Functions Beyond Multiple Polylogarithms for Precision Collider Physics“, arXiv:2203.07088 [hep-ph] (pdf).
  • Tim Adamo, John Joseph M. Carrasco, Mariana Carrillo-González, Marco Chiodaroli, Henriette Elvang, Henrik Johansson, Donal O'Connell, Radu Roiban, Oliver Schlotterer. ”The Double Copy and its Applications”, arXiv:2204.06547 [hep-th] (pdf).
  • Alessandra Buonanno, Mohammed Khalil, Donal O'Connell, Radu Roiban, Mikhail P. Solon, Mao Zeng. “Gravitational Waves and Scattering Amplitudes”, arXiv:2204.05194 [hep-th] (pdf). (also under CF07)
  • Nima Arkani-Hamed, Lance J. Dixon, Andrew J. McLeod, Marcus Spradlin, Jaroslav Trnka, Anastasia Volovich. ”Solving Scattering in N=4 Super-Yang-Mills Theory”, arXiv:2207.10636 [hep-th] (pdf).
  • Xavier Bekaert, Nicolas Boulanger, Andrea Campoleoni, Marco Chiodaroli, Dario Francia, Maxim Grigoriev, Ergin Sezgin, Evgeny Skvortsov. “Higher Spin Gravity and Higher Spin Symmetry”, arXiv:2205.01567 [hep-th] (pdf).

TF05: Lattice gauge theory

  • Denis Boyda, Salvatore Calì, Sam Foreman, Lena Funcke, et al. “Applications of Machine Learning to Lattice Quantum Field Theory”. arXiv:2202.05838 [hep-lat] (pdf). (also under CompF03).
  • Martha Constantinou, Luigi Del Debbio, Xiangdong Ji, Huey-Wen Lin, Keh-Fei Liu, et al. “Lattice QCD Calculations of Parton Physics”, arXiv:2202.07193 [hep-lat] (pdf). (also under EF06, CompF02)
  • Thomas Blum, Peter Boyle, Mattia Bruno, Norman Christ, Felix Erben, et al. ”Discovering new physics in rare kaon decays“, arXiv:2203.10998 [hep-lat] (pdf). (also under RF02, CompF02)
  • G. Colangelo, M. Davier, A. X. El-Khadra, M. Hoferichter, C. Lehner, L. Lellouch, et al. ”Prospects for precise predictions of a_μ in the Standard Model”, arXiv:2203.15810 [hep-ph] (pdf). (also under RF03)
  • Peter Boyle, Dennis Bollweg, Richard Brower, Norman Christ, Carleton DeTar, et al. ”Lattice QCD and the Computational Frontier”, arXiv:2204.00039 [hep-lat] (pdf). (also under CompF02)
  • Tie-Jiun Hou, Huey-Wen Lin, Mengshi Yan, C.-P. Yuan. ”Impact of lattice s(x)−sbar(x) data in the CTEQ-TEA global analysis”, arXiv:2204.07944 [hep-ph] (pdf). (also under EF06, CompF02)
  • Andreas S. Kronfeld, Tanmoy Bhattacharya, Thomas Blum, Norman H. Christ, Carleton DeTar, William Detmold, Robert Edwards, Anna Hasenfratz, et al. ”Lattice QCD and Particle Physics”, arXiv:2207.07641 [hep-lat] (pdf). (also under EF0, NF06, RF0, CF0, CompF02)
  • Peter A. Boyle, Bipasha Chakraborty, Christine T.H. Davies, Thomas DeGrand, Carleton DeTar, Luigi Del Debbio, Aida X. El-Khadra, et al. “A lattice QCD perspective on weak decays of b and c quarks”, arXiv:2205.15373 [hep-lat] (pdf). (also under RF01, CompF02)

TF06: Theory techniques for precision physics

  • J. Charles, S. Descotes-Genon, Z. Ligeti, S. Monteil, M. Papucci, K. Trabelsi, and L. Vale Silva, “New physics in B meson mixing: future sensitivity and limitations”, arXiv:2006.04824 [hep-ph] (pdf). (also under RF01)
  • Fabrizio Caola, Wen Chen, Claude Duhr, Xiaohui Liu, Bernhard Mistlberger, Frank Petriello, Gherardo Vita, Stefan Weinzierl. ”The Path forward to N3LO”, arXiv:2203.06730 [hep-ph] (pdf).
  • Simone Alioli, Radja Boughezal, Weiguang Cao, Gauthier Durieux, et al. ”Theoretical developments in the SMEFT at dimension-8 and beyond“, arXiv:2203.06771 [hep-ph] (pdf).
  • Simone Alioli, Juan Fuster, Maria Vittoria Garzelli, Alessandro Gavardi, Adrian Irles, Davide Melini, Sven-Olaf Moch, Peter Uwer, Katharina Voß. ”Top-quark mass extraction from t tbar j+X events at the LHC: theory predictions”, arXiv:2203.07344 [hep-ph] (pdf). (also under EF03)
  • Neda Darvishi, S. Höche, Daniele Lombardi, M.R. Masouminia, Javier Mazzitelli, Pier Francesco Monni, et al. ”Future prospects for parton showers“, arXiv:2203.06799 [hep-ph] (pdf).
  • Melissa van Beekveld, Sebastian Jaskiewicz, Tao Liu, Xiaohui Liu, Duff Neill, Alexander Penin, et al. ”Resummation for future colliders”, arXiv:2203.07907 [hep-ph] (pdf).
  • Fernando Febres Cordero, Andreas von Manteuffel, Tobias Neumann. ”Computational challenges for multi-loop collider phenomenology”, arXiv:2204.04200 [hep-ph] (pdf). (also under CompF02)
  • S. Amoroso, A. Apyan, N. Armesto, R. D. Ball, V. Bertone, C. Bissolotti, et al. ”Proton structure at the precision frontier”, arXiv:2203.13923 [hep-ph] (pdf). (also under EF06)

TF07: Collider phenomenology

  • A. Valassi et al, “Challenges in Monte Carlo event generator software for High-Luminosity LHC”, arXiv:2004.13687 [hep-ph ]] (pdf). (also under CompF02)
  • G. Kasieczka, B. Nachman, D. Shih, et al. “The LHC Olympics 2020: A Community Challenge for Anomaly Detection in High Energy Physics”, arXiv:2101.08320 [hep-ph] (pdf). (also under EF09, CompF03)
  • S. V. Chekanov, S. Darmora, W. Islam, C. E. M. Wagner, and J. Zhang “Model-independent searches for new physics in multi-body invariant masses”, arXiv:2103.10217 [hep-ph] (pdf). (also under EF09)
  • A. Aboubrahim, M. Klasen, P. Nath, R. M. Syed “Future searches for SUSY at the LHC post Fermilab (g−2)_μ”, arXiv:2107.06021 [hep-ph] (pdf). (also under EF08)
  • HSF Physics Event Generator WG: Efe Yazgan, Josh McFayden, Andrea Valassi, et al. “HL-LHC Computing Review Stage-2, Common Software Projects: Event Generators”, arXiv:2109.14938 [hep-ph] (pdf). (also under CompF2)
  • Hugues Beauchesne, Giovanni Grilli di Cortona, “Event-level variables for semivisible jets using anomalous jet tagging”, arXiv:2111.12156 [hep-ph] (pdf). (also under EF10)
  • Radovan Dermisek, Junichiro Kawamura, Enrico Lunghi, Navin McGinnis, Seodong Shin. “Combined signatures of heavy Higgses and vectorlike fermions at the HL-LHC”, arXiv:2203.03852 [hep-ph] (pdf).(also at EF09)
  • Rojalin Padhan, Manimala Mitra, Suchita Kulkarni, Frank F. Deppisch. ”Displaced fat-jets and tracks to probe boosted right-handed neutrinos in the U(1)_{B−L} model”, arXiv:2203.06114 [hep-ph] (pdf). (also under EF09)
  • Avik Banerjee, Diogo Buarque Franzosi, Giacomo Cacciapaglia, Aldo Deandrea, Gabriele Ferretti, et al. “Phenomenological aspects of composite Higgs scenarios: exotic scalars and vector-like quarks”, arXiv:2203.07270 [hep-ph] (pdf). (also under EF08)
  • Diogo Buarque Franzosi, Michele Gallinaro, Richard Ruiz, Thea K. Aarrestad, et al. ”Vector Boson Scattering Processes: Status and Prospects”, arXiv:2106.01393 [hep-ph] (pdf). (also under EF04)
  • Antonio Costantini, Federico De Lillo, Fabio Maltoni, Luca Mantani, Olivier Mattelaer, Richard Ruiz, Xiaoran Zhao. ”Vector boson fusion at multi-TeV muon colliders”, arXiv:2005.10289 [hep-ph] (pdf). (also under EF04, AF04, CompF02)
  • Richard Ruiz, Antonio Costantini, Fabio Maltoni, Olivier Mattelaer. ”The Effective Vector Boson Approximation in High-Energy Muon Collisions”, arXiv:2111.02442 [hep-ph] (pdf). (also under EF04, AF04, CompF02)
  • Rahool Kumar Barman, Morgan E. Cassidy, Zhongtian Dong, Dorival Gonçalves, et al. ”Directly Probing the CP-structure of the Higgs-Top Yukawa at HL-LHC and Future Colliders”, arXiv:2203.08127 [hep-ph] (pdf). (also under EF01)
  • Shekhar Adhikari, Samuel D. Lane, Ian M. Lewis, Matthew Sullivan. ”Complex Scalar Singlet Model Benchmarks for Snowmass”, arXiv:2203.07455 [hep-ph] (pdf). (also under EF01)
  • Jan Kalinowski, Tania Robens, Aleksander Filip Zarnecki. ”New Physics with missing energy at future lepton colliders”, arXiv:2203.07913 [hep-ph] (pdf). (also under EF10)
  • Guillaume Albouy, Jared Barron, Hugues Beauchesne, Elias Bernreuther, Marcella Bona, et al. ”Theory, phenomenology, and experimental avenues for dark showers“, arXiv:2203.09503 [hep-ph] (pdf). (also under EF09)
  • Stephen Bailey, Christian Bierlich, Andy Buckley, Jon Butterworth, Kyle Cranmer, et al. ”Data and Analysis Preservation, Recasting, and Reinterpretation”, arXiv:2203.10057 [hep-ph] (pdf). (also under CompF07)
  • Kaustubh Agashe, Jack H. Collins, Peizhi Du, Majid Ekhterachian, Sungwoo Hong, Doojin Kim, Rashmish K. Mishra, Deepak Sathyan. ”Collider Physics Opportunities of Extended Warped Extra-Dimensional Models”, arXiv:2203.13305 [hep-ph] (pdf). (also under EF09)
  • Tao Han, Adam K. Leibovich, Yang Ma, Xiao-Ze Tan. ”Higgs boson decay to charmonia via c-quark fragmentation”, arXiv:2202.08273 [hep-ph] (pdf). (also under EF01)
  • Kaustubh Agashe, Sagar Airen, Roberto Franceschini, Doojin Kim, Deepak Sathyan. ”Implications of Energy Peak for Collider Phenomenology: Top Quark Mass Determination and Beyond”, arXiv:2204.02928 [hep-ph] (pdf). (also under EF03)
  • Andreas Papaefstathiou, Tania Robens, Graham White. ”Signal strength and W-boson mass measurements as a probe of the electro-weak phase transition at colliders”, arXiv:2205.14379 [hep-ph] (pdf). (also under EF01)
  • Felix Kling, Honglei Li, Shuailong Li, Adarsh Pyarelal, Huayang Song, Shufang Su, Wei Su. ”Exotic Higgs Decays in the Type-II 2HDMs at Current and Future pp Colliders”, arXiv:2205.12198 [hep-ph] (pdf). (also under EF02)
  • Roberto Franceschini, Doojin Kim, Kyoungchul Kong, Konstantin T. Matchev, Myeonghun Park, Prasanth Shyamsundar. “Kinematic Variables and Feature Engineering for Particle Phenomenology”, arXiv:2206.13431 [hep-ph] (pdf). (also under EF0)

TF08: Beyond-Standard-Model model building

  • A. Aboubrahim, W.-Z. Feng, P. Nath, Z.-Y. Wang. “Hidden sectors and a multi-temperature universe”, arXiv:2106.06494[hep-ph] (pdf). (also under CF01)
  • Howard Baer, Vernon Barger, Shadman Salam, Dibyashree Sengupta. “Mini-review: Expectations for supersymmetry from the string landscape”, arXiv:2202.11578 [hep-ph]] (pdf). (also under EF08)
  • Nikita Blinov, Nathaniel Craig, Matthew J. Dolan, Jordy de Vries, Patrick Draper, Isabel Garcia Garcia, Benjamin Lillard, Jessie Shelton. ”Strong CP Beyond Axion Direct Detection”, arXiv:2203.07218 [hep-ph] (pdf). (also under EF09 , CF02)
  • Alaina Attanasio, Sunil A. Bhave, Carlos Blanco, Daniel Carney, Marcel Demarteau,, et al. (Windchime Collaboration). ”The Windchime Project”, arXiv:2203.07242 [hep-ex] (pdf). (also under CF01, IF01)
  • Daniel Carney, Nirmal Raj, Yang Bai, Joshua Berger, Carlos Blanco, Joseph Bramante, et al. ”Ultraheavy particle dark matter“, arXiv:2203.06508 [hep-ph] (pdf). (also under CF01, IF01)
  • Bhaskar Dutta, Sumit Ghosh, Jason Kumar. ”U(1)_T3R Extension of Standard Model: A Sub-GeV Dark Matter Model”, arXiv:2203.07786 [hep-ph] (pdf). (also under TF08)
  • Prateek Agrawal, Kim V. Berghaus, JiJi Fan, Anson Hook, Gustavo Marques-Tavares, Tom Rudelius. ”Some open questions in axion theory”, arXiv:2203.08026 [hep-ph] (pdf).

TF09: Astro-particle physics and cosmology

  • Emanuele Berti, Vitor Cardoso, Zoltán Haiman, Daniel E. Holz, et al. ”Cosmic Frontier: Fundamental Physics and Beyond the Standard Model“, arXiv:2203.06240 [hep-ph] (pdf). (also under TF09)
  • Kimberly K. Boddy, Mariangela Lisanti, Samuel D. McDermott, Nicholas L. Rodd, Christoph Weniger, et al. ”Astrophysical and Cosmological Probes of Dark Matter”, arXiv:2203.06380 [hep-ph] (pdf).
  • Pouya Asadi, Saurabh Bansal, Asher Berlin, Raymond T. Co, Djuna Croon, Yanou Cui, et al. ”Early-Universe Model Building”, arXiv:2203.06680 [hep-ph] (pdf). (also under CF0)
  • Rebecca K. Leane, Seodong Shin, Liang Yang, Govinda Adhikari, et al. ”Puzzling Excesses in Dark Matter Searches and How to Resolve Them“, arXiv:2203.06859 [hep-ph] (pdf). (also under CF01)
  • Tathagata Ghosh, Chris Kelso, Jason Kumar, Pearl Sandick, Patrick Stengel. ”Simplified dark matter models with charged mediators”, arXiv:2203.08107 [hep-ph] (pdf). (also under EF10, RF03, CF01)
  • Ana Achúcarro, Matteo Biagetti, Matteo Braglia, Giovanni Cabass, Emanuele Castorina, et al. ”Inflation: Theory and Observations“, arXiv:2203.08128 [astro-ph.CO] (pdf). (also under CF05)
  • Daniel Baumann, Daniel Green, Austin Joyce, Enrico Pajer, Guilherme L. Pimentel, Charlotte Sleight, Massimo Taronna. ”The Cosmological Bootstrap”, arXiv:2203.08121 [hep-th] (pdf). (also under CF05)
  • Cora Dvorkin, Joel Meyers, Peter Adshead, Mustafa Amin, Carlos A. Argüelles, et al. ”The Physics of Light Relics”, arXiv:2203.07943 [hep-ph] (pdf). (also under CF05)
  • Andrea Mitridate, Tanner Trickle, Zhengkang Zhang, Kathryn M. Zurek. ”Light Dark Matter Direct Detection at the Interface With Condensed Matter Physics”, arXiv:2203.07492 [hep-ph] (pdf). (also under CF01)
  • Masha Baryakhtar, Regina Caputo, Djuna Croon, Kerstin Perez, Emanuele Berti, et al. ”Dark Matter In Extreme Astrophysical Environments”, arXiv:2203.07984 [hep-ph] (pdf). (also under CF03)
  • Markus Ackermann, Sanjib K. Agarwalla, Jaime Alvarez-Muñiz, Carlos A. Argüelles, et al. ”High-Energy and Ultra-High-Energy Neutrinos”, arXiv:2203.08096 [hep-ph] (pdf). (also under NF04, CF07, IF10)
  • Clarence L. Chang, Kevin M. Huffenberger, Bradford A. Benson, Federico Bianchini, et al. ”Cosmic Microwave Background Measurements White Paper”, arXiv:2203.07638 [astro-ph.CO] (pdf). (also under CF05, IF10)
  • Rouven Essig, Yonatan Kahn, Simon Knapen, Andreas Ringwald, Natalia Toro. ”Theory Frontier: Theory Meets the Lab”, arXiv:2203.10089 [hep-ph] (pdf). (also under EF09, RF06, CF0)
  • D. Antypas, A. Banerjee, C. Bartram, M. Baryakhtar, J. Betz, et al. ”New Horizons: Scalar and Vector Ultralight Dark Matter”, arXiv:2203.14915 [hep-ex] (pdf). (also under RF03, CF02, IF01)
  • Keith R. Dienes, Brooks Thomas. ”More is Different: Non-Minimal Dark Sectors and their Implications for Particle Physics, Astrophysics, and Cosmology – 13 Take-Away Lessons for Snowmass 2021“, arXiv:2203.17258 [hep-ph] (pdf). (also under EF10, CF03)
  • J. Jaeckel, G. Rybka, L. Winslow, for the Axion Prospects Collaboration. “Axion Dark Matter”, arXiv:2203.14923 [hep-ex] (pdf). (also under RF03, CF02, AF07, IF01)
  • Brian Batell, Nikita Blinov, Christopher Hearty, Robert McGehee. ”Exploring Dark Sector Portals with High Intensity Experiments”, arXiv:2207.06905 [hep-ph] (pdf). (also under RF06, CF01)

TF10: Quantum information

  • Yannick Meurice, James C. Osborn, Ryo Sakai, Judah Unmuth-Yockey, Simon Catterall, Rolando D. Somma. ”Tensor networks for High Energy Physics”, arXiv:2203.04902 [hep-lat] (pdf). (also under CompF06)
  • Thomas Faulkner, Thomas Hartman, Matthew Headrick, Mukund Rangamani, Brian Swingle. ”Quantum information in quantum field theory and quantum gravity”, arXiv:2203.07117 [hep-th] (pdf).
  • S. Brooks, K. Brown, F. Méot, A. Nomerotski, S. Peggs, M. Palmer, et al. ”Ion Coulomb Crystals in Storage Rings for Quantum Information Science”, arXiv:2203.06809 [physics.acc-ph] (pdf). (also under AF01, IF01, CompF06)
  • Daniel Carney, Yanbei Chen, Andrew Geraci, Holger Müller, Cristian D. Panda, Philip C. E. Stamp, Jacob M. Taylor. ”Tabletop experiments for infrared quantum gravity”, arXiv:2203.11846 [gr-qc] (pdf).
  • Christian W. Bauer, Zohreh Davoudi, A. Baha Balantekin, Tanmoy Bhattacharya, et al. ”Quantum Simulation for High Energy Physics”, arXiv:2204.03381 [quant-ph] (pdf). (also under CompF06; also relevant to TF05)
  • M. Sohaib Alam, Sergey Belomestnykh, Nicholas Bornman, Gustavo Cancelo, Yu-Chiu Chao, et al. “Quantum computing hardware for HEP algorithms and sensing”, arXiv:2204.08605 [quant-ph] (pdf). (also under CompF06)

TF11: Theory of Neutrino Physics

  • Tao Han, Jiajun Liao, Hongkai Liu, Danny Marfatia, Richard Ruiz. ”BSM Neutrino physics: complementarity across energies”, arXiv:2203.06131 [hep-ph] (pdf). (also under EF08, RF04)
  • Roshan Mammen Abraham, Jaime Alvarez-Muñiz, Carlos A. Argüelles, Akitaka Ariga, Tomoko Ariga, et al. ”Tau Neutrinos in the Next Decade: from GeV to EeV”, arXiv:2203.05591 [hep-ph] (pdf). (also under EF09, NF03, CF07, IF0, UF01)
  • Kevork N. Abazajian, Nikita Blinov, Thejs Brinckmann, Mu-Chun Chen, Zelimir Djurcic, et al. ”Synergy between cosmological and laboratory searches in neutrino physics”, arXiv:2203.07377 [hep-ph] (pdf). (also under NF5, CF7)
  • L. Alvarez Ruso, A. M. Ankowski, S. Bacca, A. B. Balantekin, J. Carlson, S. Gardiner, et al. ”Theoretical tools for neutrino scattering: interplay between lattice QCD, EFTs, nuclear physics, phenomenology, and neutrino event generators”, arXiv:2203.09030 [hep-ph] (pdf). (also under NF06, CompF02)
  • Luis Alvarez-Ruso, Joshua L. Barrow, Leo Bellantoni, Minerba Betancourt, et al. ”Neutrino Scattering Measurements on Hydrogen and Deuterium”, arXiv:2203.11298 [hep-ex] (pdf). (also under NF06)
  • Vincenzo Cirigliano, Zohreh Davoudi, Wouter Dekens, Jordy de Vries, et al. ”Neutrinoless Double-Beta Decay: A Roadmap for Matching Theory to Experiment“, arXiv:2203.12169 [hep-ph] (pdf). (also under NF05, RF04; also relevant to TF05)
  • Yahya Almumin, Mu-Chun Chen, Murong Cheng, Victor Knapp-Perez, Yulun Li, Adreja Mondol, Saul Ramos-Sanchez, Michael Ratz, Shreya Shukla. ”Neutrino Flavor Model Building and the Origins of Flavor and CP Violation”, arXiv:2204.08668 [hep-ph] (pdf). (also under NF03)
  • Jeffrey M. Berryman, Nikita Blinov, Vedran Brdar, Thejs Brinckmann, Mauricio Bustamante, Francis-Yan Cyr-Racine, et al. “Neutrino Self-Interactions”, arXiv:2203.01955 [hep-ph] (pdf). (also under NF03)
  • Brian Batell, Joshua Berger, Vedran Brdar, Alan D. Bross, Janet M. Conrad, Patrick deNiverville, et al. “Dark Sector Studies with Neutrino Beams”, arXiv:2207.06898 [hep-ph] (pdf). (also under NF03, RF06, CF01)

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submissions/tf.txt · Last modified: 2022/10/18 00:47 by mpeskin