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The planned neutrino program at Fermilab requires large proton beam intensities in excess of 2 MW. Measuring the transverse profiles of these high intensity beams is challenging and often depends on non-invasive techniques. One such…

Accelerator Physics · Physics 2018-03-06 R. Thurman-Keup , M. Alvarez , J. Fitzgerald , C. Lundberg , P. Prieto , J. Zagel , W. Blokland

The MINOS Collaboration continues its search for $\nu_e$ appearance in the NuMI (Neutrinos at the Main Injector) beam at Fermilab. Neutrinos in the beam interact in the Near Detector, located 1 km from the beam source, allowing us to…

High Energy Physics - Experiment · Physics 2015-03-19 Mhair Orchanian

We study the production of exotic millicharged particles (MCPs) from cosmic ray-atmosphere collisions which constitutes a permanent MCP production source for all terrestrial experiments Our calculation of the MCP flux can be used to…

High Energy Physics - Phenomenology · Physics 2021-01-04 Ryan Plestid , Volodymyr Takhistov , Yu-Dai Tsai , Torsten Bringmann , Alexander Kusenko , Maxim Pospelov

Liquid Argon (LAr) is one of the most widely used scintillators in particle detection, due to its low cost, high availability and excellent scintillation properties. A large number of experiments in the neutrino sector are based around…

Instrumentation and Detectors · Physics 2021-03-12 Krishanu Majumdar , Konstantinos Mavrokoridis

One proposed component of the upcoming Deep Underground Neutrino Experiment (DUNE) near detector complex is a multi-purpose, magnetized, gaseous argon time projection chamber: the Multi-Purpose Detector (MPD). We explore the new-physics…

High Energy Physics - Phenomenology · Physics 2020-03-18 Jeffrey M. Berryman , André de Gouvêa , Patrick J. Fox , Boris J. Kayser , Kevin J. Kelly , Jennifer L. Raaf

This paper investigates the performance of the micro-electro-mechanical systems resonant sensor used for particle detection and concentration measurement. These fine and ultra-fine particles such as particulate matter (PM), ferrous…

Instrumentation and Detectors · Physics 2021-12-21 Vinayak Pachkawade , Zion Tse

The ICARUS liquid argon TPC detector is taking data on the Booster (BNB) and Main Injector (NuMI) Neutrino beam lines at Fermilab with a trigger system based on the scintillation light produced by charged particles in coincidence with the…

High Energy Physics - Experiment · Physics 2026-02-19 ICARUS collaboration , F. Abd Alrahman , P. Abratenko , N. Abrego-Martinez , A. Aduszkiewicz , F. Akbar , L. Aliaga Soplin , M. Artero Pons , J. Asaadi , W. F. Badgett , B. Baibussinov , F. Battisti , V. Bellini , R. Benocci , J. Berger , S. Berkman , S. Bertolucci , M. Betancourt , A. Blanchet , F. Boffelli , M. Bonesini , T. Boone , B. Bottino , A. Braggiotti , D. Brailsford , S. J. Brice , V. Brio , C. Brizzolari , H. S. Budd , A. Campani , A. Campos , D. Carber , M. Carneiro , I. Caro Terrazas , H. Carranza , F. Castillo Fernandez , S. Centro , G. Cerati , A. Chatterjee , D. Cherdack , S. Cherubini , N. Chithirasreemadam , M. Cicerchia , T. E. Coan , A. Cocco , M. R. Convery , L. Cooper-Troendle , S. Copello , H. Da Motta , M. Dallolio , A. A. Dange , A. de Roeck , S. Di Domizio , D. Di Ferdinando , L. Di Noto , M. Diwan , S. Dolan , L. Domine , S. Donati , F. Drielsma , J. Dyer , S. Dytman , A. Falcone , C. Farnese , A. Fava , N. Gallice , F. G. Garcia , C. Gatto , D. Gibin , A. Gioiosa , W. Gu , A. Guglielmi , G. Gurung , K. Hassinin , H. Hausner , A. Heggestuen , B. Howard , R. Howell , Z. Hulcher , I. Ingratta , C. James , W. Jang , Y. -J. Jwa , L. Kashur , W. Ketchum , J. S. Kim , D. -H. Koh , T. Krishnan , J. Larkin , Y. Li , C. Mariani , C. M. Marshall , S. Martynenko , N. Mauri , K. S. McFarland , A. Menegolli , G. Meng , O. G. Miranda , A. Mogan , N. Moggi , E. Montagna , A. Montanari , C. Montanari , M. Mooney , G. Moreno-Granados , J. Mueller , M. Murphy , D. P. Méndez , D. Naples , S. Palestini , M. Pallavicini , V. Paolone , L. Pasqualini , L. Patrizii , L. Paudel , G. Petrillo , C. Petta , V. Pia , F. Pietropaolo , F. Poppi , M. Pozzato , M. L. Pumo , G. Putnam , X. Qian , A. Rappoldi , G. L. Raselli , S. Repetto , F. Resnati , A. M. Ricci , E. Richards , M. Rosenberg , M. Rossella , N. Rowe , P. Roy , C. Rubbia , M. Saad , S. Saha , G. Salmoria , S. Samanta , A. Scaramelli , D. Schmitz , A. Schukraft , D. Senadheera , S-H. Seo , F. Sergiampietri , G. Sirri , J. S. Smedley , J. Smith , M. Sotgia , L. Stanco , J. Stewart , H. A. Tanaka , M. Tenti , K. Terao , F. Terranova , V. Togo , D. Torretta , M. Torti , F. Tortorici , D. Totani , R. Triozzi , Y. -T. Tsai , K. V. Tsang , T. Usher , F. Varanini , N. Vardy , S. Ventura , M. Vicenzi , C. Vignoli , B. Viren , F. A. Wieler , Z. Williams , P. Wilson , R. J. Wilson , J. Wolfs , T. Wongjirad , A. Wood , E. Worcester , M. Worcester , M. Wospakrik , J. Xia , S. Yadav , H. Yu , J. Yu , A. Zani , J. Zennamo , J. Zettlemoyer , C. Zhang , S. Zucchelli

We report a study of muon neutrino charged-current quasi-elastic events in the segmented scintillator inner tracker of the MINERvA experiment running in the NuMI neutrino beam at Fermilab. The events were selected by requiring a {\mu}^- and…

High Energy Physics - Experiment · Physics 2014-11-25 The MINERvA collaboration , G. A. Fiorentini , D. W. Schmitz , P. A. Rodrigues , L. Aliaga , O. Altinok , B. Baldin , A. Baumbaugh , A. Bodek , D. Boehnlein , S. Boyd , R. Bradford , W. K. Brooks , H. Budd , A. Butkevich , D. A. Martinez Caicedo , C. M. Castromonte , M. E. Christy , H. Chung , J. Chvojka , M. Clark , H. da Motta , D. S. Damiani , I. Danko , M. Datta , M. Day , R. DeMaat , J. Devan , E. Draeger , S. A. Dytman , G. A. Díaz , B. Eberly , D. A. Edmondson , J. Felix , T. Fitzpatrick , L. Fields , A. M. Gago , H. Gallagher , C. A. George , J. A. Gielata , C. Gingu , B. Gobbi , R. Gran , N. Grossman , J. Hanson , D. A. Harris , J. Heaton , A. Higuera , I. J. Howley , K. Hurtado , M. Jerkins , T. Kafka , J. Kaisen , M. O. Kanter , C. E. Keppel , J. Kilmer , M. Kordosky , A. H. Krajeski , S. A. Kulagin , T. Le , H. Lee , A. G. Leister , G. Locke , G. Maggi , E. Maher , S. Manly , W. A. Mann , C. M. Marshall , K. S. McFarland , C. L. McGivern , A. M. McGowan , A. Mislivec , J. G. Morfń , J. Mousseau , D. Naples , J. K. Nelson , G. Niculescu , I. Niculescu , N. Ochoa , C. D. O'Connor , J. Olsen , B. Osmanov , J. Osta , J. L. Palomino , V. Paolone , J. Park , C. E. Patrick , G. N. Perdue , C. Peña , L. Rakotondravohitra , R. D. Ransome , H. Ray , L. Ren , C. Rude , K. E. Sassin , H. Schellman , R. M. Schneider , E. C. Schulte , C. Simon , F. D. Snider , M. C. Snyder , J. T. Sobczyk , C. J. Solano Salinas , N. Tagg , W. Tan , B. G. Tice , G. Tzanakos , J. P. Velásquez , J. Walding , T. Walton , J. Wolcott , B. A. Wolthuis , N. Woodward , G. Zavala , H. B. Zeng , D. Zhang , L. Y. Zhu , B. P. Ziemer

Measurements and calculations of the air activation at a high-energy proton accelerator are described. The quantity of radionuclides released outdoors depends on operation scenarios including details of the air exchange inside the facility.…

Accelerator Physics · Physics 2018-03-14 I. L. Rakhno , J. Hylen , P. Kasper , N. V. Mokhov , M. Quinn , S. I. Striganov , K. Vaziri

Nearly-sterile neutrinos with masses in the MeV range and below would be produced in the beam of the Short-Baseline Neutrino (SBN) program at Fermilab. In this article, we study the potential for SBN to discover these particles through…

High Energy Physics - Phenomenology · Physics 2017-05-24 Peter Ballett , Silvia Pascoli , Mark Ross-Lonergan

The MicroBooNE experiment at Fermilab uses liquid argon time projection chamber (LArTPC) technology to study neutrino interactions in argon. A fundamental requirement for LArTPCs is to achieve and maintain a low level of electronegative…

Instrumentation and Detectors · Physics 2017-10-03 Varuna Meddage

Mature technology of Liquid Argon Time Projection Chambers in conjunction with intense neutrino beams constructed at Fermilab offer a broad program of neutrino physics for the next decade.

High Energy Physics - Experiment · Physics 2009-09-29 L. Bartoszek

The MiniBooNE experiment at Fermilab reports a total excess of $638.0 \pm 132.8$ electron-like events ($4.8 \sigma$) from a data sample corresponding to $18.75 \times 10^{20}$ protons-on-target in neutrino mode, which is a 46\% increase in…

Over the last few years it has become increasingly clear that low energy, but high precision experiments provide a powerful and complementary window to physics beyond the Standard Model. In this note we illuminate this by using minicharged…

High Energy Physics - Phenomenology · Physics 2010-01-06 Joerg Jaeckel

We study the optimization of a green-field, two-baseline reactor experiment with respect to the sensitivity for electron antineutrino disappearance in search of a light sterile neutrino. We consider both commercial and research reactors and…

High Energy Physics - Phenomenology · Physics 2022-02-16 Jeffrey M. Berryman , Luis A. Delgadillo , Patrick Huber

We present several studies of convolutional neural networks applied to data coming from the MicroBooNE detector, a liquid argon time projection chamber (LArTPC). The algorithms studied include the classification of single particle images,…

Instrumentation and Detectors · Physics 2023-02-17 MicroBooNE collaboration , R. Acciarri , C. Adams , R. An , J. Asaadi , M. Auger , L. Bagby , B. Baller , G. Barr , M. Bass , F. Bay , M. Bishai , A. Blake , T. Bolton , L. Bugel , L. Camilleri , D. Caratelli , B. Carls , R. Castillo Fernandez , F. Cavanna , H. Chen , E. Church , D. Cianci , G. H. Collin , J. M. Conrad , M. Convery , J. I. Crespo-Anadón , M. Del Tutto , D. Devitt , S. Dytman , B. Eberly , A. Ereditato , L. Escudero Sanchez , J. Esquivel , B. T. Fleming , W. Foreman , A. P. Furmanski , G. T. Garvey , V. Genty , D. Goeldi , S. Gollapinni , N. Graf , E. Gramellini , H. Greenlee , R. Grosso , R. Guenette , A. Hackenburg , P. Hamilton , O. Hen , V Hewes , C. Hill , J. Ho , G. Horton-Smith , C. James , J. Jan de Vries , C. -M. Jen , L. Jiang , R. A. Johnson , B. J. P. Jones , J. Joshi , H. Jostlein , D. Kaleko , G. Karagiorgi , W. Ketchum , B. Kirby , M. Kirby , T. Kobilarcik , I. Kreslo , A. Laube , Y. Li , A. Lister , B. R. Littlejohn , S. Lockwitz , D. Lorca , W. C. Louis , M. Luethi , B. Lundberg , X. Luo , A. Marchionni , C. Mariani , J. Marshall , D. A. Martinez Caicedo , V. Meddage , T. Miceli , G. B. Mills , J. Moon , M. Mooney , C. D. Moore , J. Mousseau , R. Murrells , D. Naples , P. Nienaber , J. Nowak , O. Palamara , V. Paolone , V. Papavassiliou , S. F. Pate , Z. Pavlovic , D. Porzio , G. Pulliam , X. Qian , J. L. Raaf , A. Rafique , L. Rochester , C. Rudolf von Rohr , B. Russell , D. W. Schmitz , A. Schukraft , W. Seligman , M. H. Shaevitz , J. Sinclair , E. L. Snider , M. Soderberg , S. Söldner-Rembold , S. R. Soleti , P. Spentzouris , J. Spitz , J. St. John , T. Strauss , A. M. Szelc , N. Tagg , K. Terao , M. Thomson , M. Toups , Y. -T. Tsai , S. Tufanli , T. Usher , R. G. Van de Water , B. Viren , M. Weber , J. Weston , D. A. Wickremasinghe , S. Wolbers , T. Wongjirad , K. Woodruff , T. Yang , G. P. Zeller , J. Zennamo , C. Zhang

The sensitivity to New Physics of a low threshold scintillating argon bubble chamber measuring coherent elastic neutrino-nucleus scattering in reactors is reported. Namely, light scalar mediators, sterile neutrino oscillations, unitarity…

High Energy Physics - Phenomenology · Physics 2022-07-13 E. Alfonso-Pita , L. J. Flores , Eduardo Peinado , E. Vázquez-Jáuregui

Relativistic millicharged particles ($\chi_q$) have been proposed in various extensions to the Standard Model of particle physics. We consider the scenarios where they are produced at nuclear reactor core and via interactions of cosmic-rays…

We develop the search strategy for a heavy Majorana neutrino via the lepton number violation signal process $p\, e^- \to \mu^+ jjj$ at future electron-proton colliders. The signal and dominant standard model background events are generated…

High Energy Physics - Phenomenology · Physics 2022-07-25 Haiyong Gu , Kechen Wang