English
Related papers

Related papers: Supernova Physics at DUNE

200 papers

Existing and planned neutrino detectors, sensitive in the energy regime from 10^{17} eV to 10^{23} eV, offer opportunities for particle physics and cosmology. In this contribution, we discuss particularly the possibilities to infer…

High Energy Physics - Phenomenology · Physics 2009-11-10 A. Ringwald

We show that the Deep Underground Neutrino Experiment (DUNE) has the potential to make a precise measurement of the total active flux of 8B solar neutrinos via neutral-current (NC) interactions with argon. This would complement proposed…

High Energy Physics - Phenomenology · Physics 2024-10-03 Stephan A. Meighen-Berger , Jayden L. Newstead , John F. Beacom , Nicole F. Bell , Matthew J. Dolan

We explore the sensitivity of the Deep Underground Neutrino Experiment (DUNE) to sterile neutrino oscillations within a $3+$(pseudo-Dirac pair) framework. We first consider a pair of two sterile neutrinos forming a pseudo-Dirac pair, then…

High Energy Physics - Phenomenology · Physics 2025-11-25 Asmaa Abada , João Paulo Pinheiro , Salvador Urrea

We propose a novel analysis strategy, that leverages the unique capabilities of the DUNE experiment, to study tau neutrinos. We integrate collider physics ideas, such as jet clustering algorithms in combination with machine learning…

High Energy Physics - Phenomenology · Physics 2020-09-30 Pedro Machado , Holger Schulz , Jessica Turner

In the near future, fundamental interactions at high-energy scales may be most efficiently studied via precision measurements at low energies. A universal language to assemble and interpret precision measurements is the so-called SMEFT,…

High Energy Physics - Phenomenology · Physics 2018-05-10 Adam Falkowski , Giovanni Grilli di Cortona , Zahra Tabrizi

The preponderance of matter over antimatter in the early Universe, the dynamics of the supernova bursts that produced the heavy elements necessary for life and whether protons eventually decay --- these mysteries at the forefront of…

High Energy Physics - Experiment · Physics 2023-02-17 LBNE Collaboration , Corey Adams , David Adams , Tarek Akiri , Tyler Alion , Kris Anderson , Costas Andreopoulos , Mike Andrews , Ioana Anghel , João Carlos Costa dos Anjos , Maddalena Antonello , Enrique Arrieta-Diaz , Marina Artuso , Jonathan Asaadi , Xinhua Bai , Bagdat Baibussinov , Michael Baird , Baha Balantekin , Bruce Baller , Brian Baptista , D'Ann Barker , Gary Barker , William A. Barletta , Giles Barr , Larry Bartoszek , Amit Bashyal , Matt Bass , Vincenzo Bellini , Pietro Angelo Benetti , Bruce E. Berger , Marc Bergevin , Eileen Berman , Hans-Gerd Berns , Adam Bernstein , Robert Bernstein , Babu Bhandari , Vipin Bhatnagar , Bipul Bhuyan , Jianming Bian , Mary Bishai , Andrew Blake , Flor Blaszczyk , Erik Blaufuss , Bruce Bleakley , Edward Blucher , Steve Blusk , Virgil Bocean , F. Boffelli , Jan Boissevain , Timothy Bolton , Maurizio Bonesini , Steve Boyd , Andrew Brandt , Richard Breedon , Carl Bromberg , Ralph Brown , Giullia Brunetti , Norman Buchanan , Bill Bugg , Jerome Busenitz , E. Calligarich , Leslie Camilleri , Giada Carminati , Rachel Carr , Cesar Castromonte , Flavio Cavanna , Sandro Centro , Alex Chen , Hucheng Chen , Kai Chen , Daniel Cherdack , Cheng-Yi Chi , Sam Childress , Brajesh Chandra Choudhary , Georgios Christodoulou , Cabot-Ann Christofferson , Eric Church , David Cline , Thomas Coan , Alfredo Cocco , Joao Coelho , Stephen Coleman , Janet M. Conrad , Mark Convery , Robert Corey , Luke Corwin , Jack Cranshaw , Daniel Cronin-Hennessy , A. Curioni , Helio da Motta , Tristan Davenne , Gavin S. Davies , Steven Dazeley , Kaushik De , Andre de Gouvea , Jeffrey K. de Jong , David Demuth , Chris Densham , Milind Diwan , Zelimir Djurcic , R. Dolfini , Jeffrey Dolph , Gary Drake , Stephen Dye , Hongue Dyuang , Daniel Edmunds , Steven Elliott , Muhammad Elnimr , Sarah Eno , Sanshiro Enomoto , Carlos O. Escobar , Justin Evans , A. Falcone , Lisa Falk , Amir Farbin , Christian Farnese , Angela Fava , John Felde , S. Fernandes , Fernando Ferroni , Farshid Feyzi , Laura Fields , Alex Finch , Mike Fitton , Bonnie Fleming , Jack Fowler , Walt Fox , Alex Friedland , Stu Fuess , Brian Fujikawa , Hugh Gallagher , Raj Gandhi , Gerald Garvey , Victor M. Gehman , Gianluigi de Geronimo , Daniele Gibin , Ronald Gill , Ricardo A. Gomes , Maury C. Goodman , Jason Goon , Nicholas Graf , Mathew Graham , Rik Gran , Christopher Grant , Nick Grant , Herbert Greenlee , Leland Greenler , Sean Grullon , Elena Guardincerri , Victor Guarino , Evan Guarnaccia , Germano Guedes , Roxanne Guenette , Alberto Guglielmi , Marcelo M. Guzzo , Alec T. Habig , Robert W. Hackenburg , Haleh Hadavand , Alan Hahn , Martin Haigh , Todd Haines , Thomas Handler , Sunej Hans , Jeff Hartnell , John Harton , Robert Hatcher , Athans Hatzikoutelis , Steven Hays , Eric Hazen , Mike Headley , Anne Heavey , Karsten Heeger , Jaret Heise , Robert Hellauer , V Hewes , Alexander Himmel , Matthew Hogan , Pedro Holanda , Anna Holin , Glenn Horton-Smith , Joe Howell , Patrick Hurh , Joey Huston , James Hylen , Richard Imlay , Jonathan Insler , G. Introzzi , Zeynep Isvan , Chris Jackson , John Jacobsen , David E. Jaffe , Cat James , Chun-Min Jen , Marvin Johnson , Randy Johnson , Robert Johnson , Scott Johnson , William Johnston , John Johnstone , Ben J. P. Jones , H. Jostlein , Thomas Junk , Richard Kadel , Karl Kaess , Georgia Karagiorgi , Jarek Kaspar , Teppei Katori , Boris Kayser , Edward Kearns , Paul Keener , Ernesto Kemp , Steve H. Kettell , Mike Kirby , Joshua Klein , Gordon Koizumi , Sacha Kopp , Laura Kormos , William Kropp , Vitaly A. Kudryavtsev , Ashok Kumar , Jason Kumar , Thomas Kutter , Franco La Zia , Kenneth Lande , Charles Lane , Karol Lang , Francesco Lanni , Richard Lanza , Tony Latorre , John Learned , David Lee , Kevin Lee , Qizhong Li , Shaorui Li , Yichen Li , Zepeng Li , Jiang Libo , Steve Linden , Jiajie Ling , Jonathan Link , Laurence Littenberg , Hu Liu , Qiuguang Liu , Tiankuan Liu , John Losecco , William Louis , Byron Lundberg , Tracy Lundin , Jay Lundy , Ana Amelia Machado , Cara Maesano , Steve Magill , George Mahler , David Malon , Stephen Malys , Francesco Mammoliti , Samit Kumar Mandal , Anthony Mann , Paul Mantsch , Alberto Marchionni , William Marciano , Camillo Mariani , Jelena Maricic , Alysia Marino , Marvin Marshak , John Marshall , Shiegenobu Matsuno , Christopher Mauger , Konstantinos Mavrokoridis , Nate Mayer , Neil McCauley , Elaine McCluskey , Kirk McDonald , Kevin McFarland , David McKee , Robert McKeown , Robert McTaggart , Rashid Mehdiyev , Dongming Mei , A. Menegolli , Guang Meng , Yixiong Meng , David Mertins , Mark Messier , William Metcalf , Radovan Milincic , William Miller , Geoff Mills , Sanjib R. Mishra , Nikolai Mokhov , Claudio Montanari , David Montanari , Craig Moore , Jorge Morfin , Ben Morgan , William Morse , Zander Moss , Célio A. Moura , Stuart Mufson , David Muller , Jim Musser , Donna Naples , Jim Napolitano , Mitch Newcomer , Ryan Nichol , Tim Nicholls , Evan Niner , Barry Norris , Jaroslaw Nowak , Helen O'Keeffe , Roberto Oliveira , Travis Olson , Brian Page , Sandip Pakvasa , Ornella Palamara , Jon Paley , Vittorio Paolone , Vaia Papadimitriou , Seongtae Park , Zohreh Parsa , Kinga Partyka , Bob Paulos , Zarko Pavlovic , Simon Peeters , Andy Perch , Jon D. Perkin , Roberto Petti , Andre Petukhov , Francesco Pietropaolo , Robert Plunkett , Chris Polly , Stephen Pordes , Maxim Potekhin , Renato Potenza , Arati Prakash , Oleg Prokofiev , Xin Qian , Jennifer L. Raaf , Veljko Radeka , Igor Rakhno , Yorck Ramachers , Regina Rameika , John Ramsey , A. Rappoldi , G. L. Raselli , Peter Ratoff , Shreyas Ravindra , Brian Rebel , Juergen Reichenbacher , Dianne Reitzner , Sergio Rescia , Martin Richardson , Kieth Rielage , Kurt Riesselmann , Matt Robinson , Leon Rochester , Michael Ronquest , Marc Rosen , M. Rossella , Carlo Rubbia , Russ Rucinski , Sandeep Sahijpal , Himansu Sahoo , Paola Sala , Delia Salmiera , Nicholas Samios , Mayly Sanchez , Alberto Scaramelli , Heidi Schellman , Richard Schmitt , David Schmitz , Jack Schneps , Kate Scholberg , Ettore Segreto , Stanley Seibert , Liz Sexton-Kennedy , Mike Shaevitz , Peter Shanahan , Rahul Sharma , Terri Shaw , Nikolaos Simos , Venktesh Singh , Gus Sinnis , William Sippach , Tomasz Skwarnicki , Michael Smy , Henry Sobel , Mitch Soderberg , John Sondericker , Walter Sondheim , Alexandre Sousa , Neil J. C. Spooner , Michelle Stancari , Ion Stancu , Dorota Stefan , Andy Stefanik , James Stewart , Sheldon Stone , James Strait , Matthew Strait , Sergei Striganov , Gregory Sullivan , Yujing Sun , Louise Suter , Andrew Svenson , Robert Svoboda , Barbara Szczerbinska , Andrzej Szelc , Matthew Szydagis , Stefan Söldner-Rembold , Richard Talaga , Matthew Tamsett , Salman Tariq , Rex Tayloe , Charles Taylor , David Taylor , Artin Teymourian , Harry Themann , Matthew Thiesse , Jenny Thomas , Lee F. Thompson , Mark Thomson , Craig Thorn , Matt Thorpe , Xinchun Tian , Doug Tiedt , Walter Toki , Nikolai Tolich , M. Torti , Matt Toups , Christos Touramanis , Mani Tripathi , Igor Tropin , Yun-Tse Tsai , Craig Tull , Martin Tzanov , Jon Urheim , Shawn Usman , Mark Vagins , Gustavo Valdiviesso , Rick Van Berg , Richard Van de Water , Peter Van Gemmeren , Filippo Varanini , Gary Varner , Kamran Vaziri , Gueorgui Velev , Sandro Ventura , Chiara Vignoli , Brett Viren , Dan Wahl , Abby Waldron , Christopher W. Walter , Hanguo Wang , Wei Wang , Karl Warburton , David Warner , Ryan Wasserman , Blake Watson , Alfons Weber , Wenzhao Wei , Douglas Wells , Matthew Wetstein , Andy White , Hywel White , Lisa Whitehead , Denver Whittington , Joshua Willhite , Robert J. Wilson , Lindley Winslow , Kevin Wood , Elizabeth Worcester , Matthew Worcester , Tian Xin , Kevin Yarritu , Jingbo Ye , Minfang Yeh , Bo Yu , Jae Yu , Tianlu Yuan , A. Zani , Geralyn P. Zeller , Chao Zhang , Chao Zhang , Eric D. Zimmerman , Robert Zwaska

Accurate modeling of the absorption of tens-of-MeV $\nu_e$ on $^{40}$Ar is needed to enable measurements of astrophysical neutrinos using large liquid argon time projection chamber (LArTPC) detectors, such as those planned for the Deep…

High Energy Physics - Phenomenology · Physics 2026-04-30 Steven Gardiner , Pablo Barham Alzás , Alexis Nikolakopoulos , Luca H. Abu El-Haj , Natalie Jachowicz , Vishvas Pandey

We investigate the potential for the Deep Underground Neutrino Experiment (DUNE) to probe the existence and effects of a fourth neutrino mass-eigenstate. We study the mixing of the fourth mass-eigenstate with the three active neutrinos of…

High Energy Physics - Phenomenology · Physics 2015-10-28 Jeffrey M. Berryman , Andre de Gouvea , Kevin J. Kelly , Andrew Kobach

Future long-baseline experiments will play an important role in exploring physics beyond the standard model. One such new physics concept is the large extra dimension (LED), which provides an elegant solution to the hierarchy problem. This…

High Energy Physics - Phenomenology · Physics 2023-12-15 Samiran Roy

The origin of neutrino mass remains an open question in particle physics. One intriguing possibility is that neutrinos are massless in vacuum but acquire an effective refractive mass through interactions with ultralight dark matter during…

High Energy Physics - Phenomenology · Physics 2026-05-25 Federica Pompa , Manibrata Sen

The Deep Underground Neutrino Experiment (DUNE) will be the first mega-science program on the US soil and will shade light on some of the open questions in neutrino physics. The experiment foresees the realization of an intense neutrino…

Instrumentation and Detectors · Physics 2026-02-17 H. V. Souza

We consider a new technique for neutrino energy and topology reconstruction at DUNE. In particular, we show that when the direction of the incoming neutrino is known, one can use the measured directions of the outgoing leptonic and hadronic…

High Energy Astrophysical Phenomena · Physics 2019-07-10 Carsten Rott , DongYoung Jeong , Jason Kumar , David Yaylali

Astrophysical neutrinos allow us to access energies and baselines that cannot be reached by human-made accelerators, offering unique probes of new physics phenomena. This thesis aims to address the challenges currently facing searches for…

High Energy Physics - Phenomenology · Physics 2024-03-01 Ibrahim Safa

Neutrinos have two properties that make them fairly unique from other known particles: extremely low cross sections and flavor changing oscillations. With a good knowledge of the oscillation parameters soon in hand, it will become possible…

High Energy Physics - Phenomenology · Physics 2021-12-30 Peter B. Denton , Rebekah Pestes

Light sterile neutrinos can be probed in a number of ways, including electroweak decays, cosmology and neutrino oscillation experiments. At long-baseline experiments, the neutral-current data is directly sensitive to the presence of light…

High Energy Physics - Phenomenology · Physics 2018-08-15 Pilar Coloma , David V. Forero , Stephen J. Parke

If the heaviest neutrino mass eigenstate is unstable, its decay modes could include lighter neutrino eigenstates. In this case part of the decay products could be visible, as they would interact at neutrino detectors via mixing. At neutrino…

High Energy Physics - Phenomenology · Physics 2017-05-11 Pilar Coloma , Orlando L. G. Peres

The search for relativistic scattering signals of cosmogenic light dark matter at terrestrial detectors has received increasing attention as an alternative approach to probe dark-sector physics. Large-volume neutrino experiments are well…

High Energy Physics - Phenomenology · Physics 2021-02-02 Albert De Roeck , Doojin Kim , Zahra Gh. Moghaddam , Jong-Chul Park , Seodong Shin , Leigh H. Whitehead

Astrophysical and atmospheric neutrinos are important probes of the powerful accelerators that produce cosmic-rays with EeV energies. Understanding these accelerators is a key goal of neutrino observatories, along with searches for…

High Energy Astrophysical Phenomena · Physics 2019-06-07 Spencer R. Klein

Discovering new neutrino interactions would provide evidence of physics beyond the Standard Model. We focus on flavor-dependent long-range neutrino interactions mediated by ultra-light mediators (masses below $10^{-10}$ eV) from…

High Energy Physics - Phenomenology · Physics 2025-01-22 Masoom Singh , Mauricio Bustamante , Sanjib Kumar Agarwalla

Neutrino astrophysics offers new perspectives on the Universe investigation: high energy neutrinos, produced by the most energetic phenomena in our Galaxy and in the Universe, carry complementary (if not exclusive) information about the…

High Energy Astrophysical Phenomena · Physics 2010-02-11 T. Chiarusi , M. Spurio