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The Advanced Superconducting Test Accelerator (ASTA) facility is currently under construction at Fermilab. With a 1-ms macropulse composed of up to 3000 micropulses and with beam energies projected from 45 to 800 MeV, the need for…

Accelerator Physics · Physics 2014-09-01 A. H. Lumpkin , M. Wendt , J. M. Byrd

The Minos+ experiment is an extension of the Minos experiment at a higher energy and more intense neutrino beam, with the data collection having begun in the fall of 2013. The neutrino beam is provided by the Neutrinos from the Main…

Instrumentation and Detectors · Physics 2016-11-17 William Badgett , Steve R. Hahn , Donatella Torretta , Jerry Meier , Jeffrey Gunderson , Denise Osterholm , David Saranen

Modern ion accelerators and ion implantation systems need very short, highly versatile, Low Energy Beam Transport (LEBT) systems. The need for reliable and continuous operation requires LEBT designs to be simple and robust. The energy…

Accelerator Physics · Physics 2013-02-01 M. Popovic , G. Flanagan , R. P. Johnson , J. H. Nipper

Fermilab is upgrading its Booster synchrotron to increase ramp rate and intensity. This is part of the Proton Improvement Plan (PIP-II) that will allow the Main Injector to achieve proton beam power of 1.2 MW within the next few years. This…

Design, fabrication and assembly of a novel fast-cycling accelerator magnet is presented. A short-sample magnet is powered with a single-turn HTS cable capable to carry 80 kA current at 20 K and generate 1.75 T field in a 40 mm magnet gap.…

Accelerator Physics · Physics 2018-07-04 H. Piekarz , Jamie Blowers , Steven Hays , Vladimir Shiltsev

A coasting hadron beam with an elliptical transverse profile, uniform charge density, and small transverse four-dimensional (4D) emittance could improve accelerator performance in several contexts. A phase space painting method to generate…

Accelerator Physics · Physics 2022-09-14 A. Hoover , N. E. Evans

This document is the second in a series of reports on the exciting physics that would be accessible at Fermilab in the event of an upgraded proton source. Where the first report covered a broad range of topics, this report focuses…

High Energy Physics - Experiment · Physics 2007-05-23 G. Barenboim , A. de Gouvea , T. Dombeck , N. Grossman , D. Harris , D. Michael , M. Szleper , M. Velasco , S. Werkema

A new beam injection scheme is proposed for the Fermilab Booster to increase beam brightness. The beam is injected on the deceleration part of the sinusoidal magnetic ramp and capture is started immediately after the injection. During the…

Accelerator Physics · Physics 2015-04-28 C. M. Bhat

The most effective way to achieve very high collision energies in a circular particle accelerator is to maximize the field strength of the main bending dipoles. In dipole magnets using Nb-Ti superconductor the practical field limit is…

The Mega Amp Spherical Tokamak (MAST) is the centre piece of the UK fusion research programme. In 2010, a MAST Upgrade programme was initiated with three primary objectives, to contribute to: 1) Testing reactor concepts (in particular…

The Short-Baseline Near Detector (SBND), the near detector in the Short-Baseline Neutrino Program at Fermi National Accelerator Laboratory, is located just 110 m from the Booster Neutrino Beam target. Thanks to this close proximity,…

High Energy Physics - Experiment · Physics 2026-04-22 P. Abratenko , R. Acciarri , C. Adams , L. Aliaga-Soplin , O. Alterkait , R. Alvarez-Garrote , D. Andrade Aldana , C. Andreopoulos , A. Antonakis , L. Arellano , J. Asaadi , S. Balasubramanian , A. Barnard , V. Basque , J. Bateman , A. Beever , E. Belchior , M. Betancourt , A. Bhat , M. Bishai , A. Blake , B. Bogart , D. Brailsford , A. Brandt , S. Brickner , M. B. Brunetti , L. Camilleri , D. Caratelli , D. Carber , B. Carlson , M. F. Carneiro , R. Castillo , F. Cavanna , A. Chappell , H. Chen , S. Chung , M. F. Cicala , R. Coackley , J. I. Crespo-Anadón , C. Cuesta , Y. Dabburi , O. Dalager , M. Dall'Olio , R. Darby , M. Del Tutto , Z. Djurcic , V. do Lago Pimentel , S. Dominguez-Vidales , M. Dubnowsi , K. Duffy , S. Dytman , A. Ereditato , J. J. Evans , A. Ezeribe , C. Fan , A. Filkins , B. Fleming , W. Foreman , D. Franco , G. Fricano , I. Furic , A. Furmanski , S. Gao , D. Garcia-Gamez , S. Gardiner , G. Ge , I. Gil-Botella , S. Gollapinni , P. Green , W. C. Griffith , P. Guzowski , L. Hagaman , A. Hamer , P. Hamilton , R. Harnik , A. Hergenhan , M. Hernandez-Morquecho , C. Hilgenberg , P. Holanda , B. Howard , Z. Imani , C. James , R. S. Jones , M. Jung , T. Junk , D. Kalra , G. Karagiorgi , L. Kashur , K. J. Kelly , W. Ketchum , M. King , J. Klein , L. Kotsiopoulou , S. Kr Das , T. Kroupova , V. A. Kudryavtsev , N. Lane , J. Larkin , H. Lay , R. LaZur , J. -Y. Li , K. Lin , B. R. Littlejohn , L. Liu , W. C. Louis , X. Lu , X. Luo , A. Machado , P. Machado , C. Mariani , F. Marinho , J. Marshall , A. Mastbaum , K. Mavrokoridis , N. McConkey , B. McCusker , J. Mclaughlin , D. Mendez , M. Mooney , A. F. Moor , G. Moreno Granados , C. A. Moura , J. Mueller , S. Mulleriababu , A. Navrer-Agasson , M. Nebot-Guinot , V. C. L. Nguyen , F. J. Nicolas-Arnaldos , J. Nowak , S. B. Oh , N. Oza , O. Palamara , N. Pallat , V. Pandey , A. Papadopoulou , H. B. Parkinson , J. Paton , L. Paulucci , Z. Pavlovic , D. Payne , L. Pelegrina Gutiérrez , O. L. G. Peres , J. Plows , F. Psihas , G. Putnam , X. Qian , R. Rajagopalan , P. Ratoff , H. Ray , M. Reggiani-Guzzo , M. Roda , J. Romeo-Araujo , M. Ross-Lonergan , N. Rowe , P. Roy , I. Safa , A. Sanchez-Castillo , P. Sanchez-Lucas , D. W. Schmitz , A. Schneider , A. Schukraft , H. Scott , E. Segreto , J. Sensenig , M. Shaevitz , B. Slater , J. Smith , M. Soares-Nunes , M. Soderberg , S. Söldner-Rembold , J. Spitz , M. Stancari , T. Strauss , A. M. Szelc , C. Thorpe , D. Totani , M. Toups , C. Touramanis , L. Tung , G. A. Valdiviesso , R. G. Van de Water , A. Vázquez Ramos , L. Wan , M. Weber , H. Wei , T. Wester , A. White , A. Wilkinson , P. Wilson , T. Wongjirad , E. Worcester , M. Worcester , S. Yadav , E. Yandel , T. Yang , L. Yates , B. Yu , H. Yu , J. Yu , B. Zamorano , J. Zennamo , C. Zhang

Accelerator-based neutrino experiments with high-intensity proton beams and advanced detector technologies provide a powerful and complementary approach to probing physics beyond the Standard Model. The MiniBooNE experiment at Fermilab…

High Energy Physics - Phenomenology · Physics 2026-03-30 Bhaskar Dutta , Debopam Goswami , Aparajitha Karthikeyan , Vishvas Pandey , Zahra Tabrizi , Adrian Thompson , Richard G. Van de Water

Present protocols for obtaining the ultimate magnetic sensitivity of optically pumped magnetometers (OPMs) utilizing alkali-metal ensembles rely on uncorrelated atoms in stretched states. A new approach for calculating the spin projection…

Quantum Physics · Physics 2024-02-23 K. Mouloudakis , V. Koutrouli , I. K. Kominis , M. W. Mitchell , G. Vasilakis

A muon collider (MC) would require a high-power proton driver to generate intense muon beams at the start of the accelerator chain. Like other high-power facilities, the driver would accumulate intense proton bunches via charge-exchange…

Accelerator Physics · Physics 2025-08-19 Austin Hoover , Vasiliy Morozov , Amith Narayan , Maurice Piller

Project-X is a leading candidate of the next major accelerator construction project at Fermilab. The mission need of Project-X is to establish an intensity frontier for particle physics research, or more precisely, to build a multi-MW…

Accelerator Physics · Physics 2009-12-16 W. Chou

A central component of the European Spallation Source is the high-power proton accelerator. The accelerator aims in the future to provide 2 GeV protons to a rotating tungsten target for the production of neutrons at 5 MW of average beam…

Instrumentation and Detectors · Physics 2022-05-24 Douglas D. DiJulio , Mamad Eshraqi , Wolfgang Hees , Yvonne Hinrichsen , Esben Klinkby , Anton Lundmark , Gunter Muhrer , Daniel Noll

Fermilab has been working with the international particle physics and nuclear physics communities to explore and develop research programs possible with a new high intensity proton source known as "Project-X". Project X will provide…

High Energy Physics - Experiment · Physics 2011-09-19 R. Tschirhart

A fast-switching, high-repetition-rate magnet and power supply have been developed for and operated at TRIUMF, to deliver a proton beam to the new ultracold neutron (UCN) facility. The facility possesses unique operational requirements: a…

The Fermilab proton source is capable of providing 8 GeV protons for both the future long-baseline neutrino program (NuMI), and for a new program of low energy muon experiments. In particular, if the 8 GeV protons are rebunched and then…

Accelerator Physics · Physics 2007-05-23 C. Ankenbrandt , D. Bogert , F. DeJongh , S. Geer , D. McGinnis , D. Neuffer , M. Popovic , E. Prebys