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Related papers: Fermilab Program and Plans

200 papers

A study on future large accelerators [1] has considered a facility, which is designed, built and operated by a worldwide collaboration of equal partner institutions, and which is remote from most of these institutions. The full range of…

Other Computer Science · Computer Science 2007-05-23 P. Czarapata , D. Hartill , S. Myers , S. Peggs , N. Phinney , M. Serio , N. Toge , F. Willeke , C. Zhang

The PIP-II accelerator is a proposed upgrade to the Fermilab accelerator complex that will replace the existing, 400 MeV room temperature LINAC with an 800 MeV superconducting LINAC. Part of this upgrade includes a new injection scheme into…

The US neutrino community gathered at the Workshop on the Intermediate Neutrino Program (WINP) at Brookhaven National Laboratory February 4-6, 2015 to explore opportunities in neutrino physics over the next five to ten years. Scientists…

High Energy Physics - Experiment · Physics 2015-04-03 C. Adams , J. R. Alonso , A. M. Ankowski , J. A. Asaadi , J. Ashenfelter , S. N. Axani , K. Babu , C. Backhouse , H. R. Band , P. S. Barbeau , N. Barros , A. Bernstein , M. Betancourt , M. Bishai , E. Blucher , J. Bouffard , N. Bowden , S. Brice , C. Bryan , L. Camilleri , J. Cao , J. Carlson , R. E. Carr , A. Chatterjee , M. Chen , S. Chen , M. Chiu , E. D. Church , J. I. Collar , G. Collin , J. M. Conrad , M. R. Convery , R. L. Cooper , D. Cowen , H. Davoudiasl , A. De Gouvea , D. J. Dean , G. Deichert , F. Descamps , T. DeYoung , M. V. Diwan , Z. Djurcic , M. J. Dolinski , J. Dolph , B. Donnelly , D. A. Dwyer , S. Dytman , Y. Efremenko , L. L. Everett , A. Fava , E. Figueroa-Feliciano , B. Fleming , A. Friedland , B. K. Fujikawa , T. K. Gaisser , M. Galeazzi , D. C. Galehouse , A. Galindo-Uribarri , G. T. Garvey , S. Gautam , K. E. Gilje , M. Gonzalez-Garcia , M. C. Goodman , H. Gordon , E. Gramellini , M. P. Green , A. Guglielmi , R. W. Hackenburg , A. Hackenburg , F. Halzen , K. Han , S. Hans , D. Harris , K. M. Heeger , M. Herman , R. Hill , A. Holin , P. Huber , D. E. Jaffe , R. A. Johnson , J. Joshi , G. Karagiorgi , L. J. Kaufman , B. Kayser , S. H. Kettell , B. J. Kirby , J. R. Klein , Yu. G. Kolomensky , R. M. Kriske , C. E. Lane , T. J. Langford , A. Lankford , K. Lau , J. G. Learned , J. Ling , J. M. Link , D. Lissauer , L. Littenberg , B. R. Littlejohn , S. Lockwitz , M. Lokajicek , W. C. Louis , K. Luk , J. Lykken , W. J. Marciano , J. Maricic , D. M. Markoff , D. A. Martinez Caicedo , C. Mauger , K. Mavrokoridis , E. McCluskey , D. McKeen , R. McKeown , G. Mills , I. Mocioiu , B. Monreal , M. R. Mooney , J. G. Morfin , P. Mumm , J. Napolitano , R. Neilson , J. K. Nelson , M. Nessi , D. Norcini , F. Nova , D. R. Nygren , G. D. Orebi Gann , O. Palamara , Z. Parsa , R. Patterson , P. Paul , A. Pocar , X. Qian , J. L. Raaf , R. Rameika , G. Ranucci , H. Ray , D. Reyna , G. C. Rich , P. Rodrigues , E. Romero Romero , R. Rosero , S. D. Rountree , B. Rybolt , M. C. Sanchez , G. Santucci , D. Schmitz , K. Scholberg , D. Seckel , M. Shaevitz , R. Shrock , M. B. Smy , M. Soderberg , A. Sonzogni , A. B. Sousa , J. Spitz , J. M. St. John , J. Stewart , J. B. Strait , G. Sullivan , R. Svoboda , A. M. Szelc , R. Tayloe , M. A. Thomson , M. Toups , A. Vacheret , M. Vagins , R. G. Van de Water , R. B. Vogelaar , M. Weber , W. Weng , M. Wetstein , C. White , B. R. White , L. Whitehead , D. W. Whittington , M. J. Wilking , R. J. Wilson , P. Wilson , D. Winklehner , D. R. Winn , E. Worcester , L. Yang , M. Yeh , Z. W. Yokley , J. Yoo , B. Yu , J. Yu , C. Zhang

We discuss the potential for using microfabrication techniques for laser-driven accelerator construction. We introduce microfabrication processes in general, and then describe our investigation of a particular trial process. We conclude by…

Accelerator Physics · Physics 2009-11-10 Benjamin Cowan

The Short-Baseline Near Detector (SBND) is one of three Liquid Argon Time Projection Chamber (LArTPC) neutrino detectors positioned along the axis of the Booster Neutrino Beam (BNB) at Fermilab, as part of the Short-Baseline Neutrino (SBN)…

High Energy Physics - Experiment · Physics 2025-01-22 Rodrigo Alvarez Garrote

Fermi National Accelerator Laboratory (Fermilab) is currently constructing a new High Field Vertical Magnet Test Facility (HFVMTF) designed for testing High Temperature Superconducting (HTS) cables under high magnetic fields. This facility…

Accelerator Physics · Physics 2024-03-21 V. Nikolic , G. Velev , R. Bruce , T. Tope , D. Orris , X. Yuan , M. Kifarkis

Details on Final design for Cryogenic Electrical & Controls System for Fermilab' s next-gen particle accelerator PIP-II. Electrical Controls System includes instrumentation and controls of Cryogenics Distribution System and Cryomodules.…

Accelerator Physics · Physics 2025-09-22 Pratik Patel , Ram Dhuley , Ahmed Faraj , Alexander Martinez , Vrushank Patel , William Soyars , Sungwoon Yoon

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 8, on the Instrumentation Frontier, discusses…

High Energy Physics - Experiment · Physics 2014-01-24 M. Demarteau , R. Lipton , H. Nicholson , I. Shipsey , D. Akerib , A. Albayrak-Yetkin , J. Alexander , J. Anderson , M. Artuso , D. Asner , R. Ball , M. Battaglia , C. Bebek , J. Beene , Y. Benhammou , E. Bentefour , M. Bergevin , A. Bernstein , B. Bilki , E. Blucher , G. Bolla , D. Bortoletto , N. Bowden , G. Brooijmans , K. Byrum , B. Cabrera , G. Cancelo , J. Carlstrom , B. Casey , C. Chang , J. Chapman , C. H. Chen , I. Childres , D. Christian , M. Convery , W. Cooper J. Corso , J. Cumalat , P. Cushman , C. Da Via , S. Dazeley , P. Debbins , G. Deptuch , S. Dhawan , V. Di Benedetto , B. DiGiovene , Z. Djurcic , S. Dye , A. Elagin , J. Estrada , H. Evans , E. Etzion , J. Fast , C. Ferretti , P. Fisher , B. Fleming , K. Francis , P. Friedman , H. Frisch , M. Garcia-Sciveres , C. Gatto , G. Geronim , G. Gilchriese , S. Golwala , C. Grant , A. Grillo , E. Grünendahl , P. Gorham , L. Guan , G. Gutierrez , C. Haber , J. Hall , G. Haller , C. Hast , U. Heintz , T. Hemmick , D. G. Hitlin , C. Hogan , M. Hohlmann , E. Hoppe , L. Hsu , M. Huffer , K. Irwin , F. Izraelevitch , G. Jennings , M. Johnson , A. Jung , H. Kagan , C. Kenney , S. Kettell , R. Khanna , V. Khristenko , F. Krennrich , K. Kuehn , R. Kutschke , J. Learned , A. T. Lee , D. Levin , T. Liu , A. T. K. Liu , D. Lissauer , J. Love , D. Lynn , D. MacFarlane , S. Magill , S. Majewski , J. Mans , J. Maricic , P. Marleau , A. Mazzacane , D. McKinsey , J. Mehl , A. Mestvirisvilli , S. Meyer , N. Mokhov , M. Moshe , A. Mukherjee , P. Murat , S. Nahn , M. Narain , P. Nadel-Turonski , M. Newcomer , K. Nishimura , D. Nygren , E. Oberla , Y. Onel , M. Oreglia , J. Orrell , J. Paley , A. Para , S. Parker , V. Polychronakos , S. Pordes , P. Privitera , A. Prosser , M. Pyle , J. Raaf , E. Ramberg , R. Rameika , B. Rebel , J. Repond , D. Reyna , L. Ristori , R. Rivera , A. Ronzhin , R. Rusack , J. Russ , A. Ryd , H. Sadrozinski , H. Sahoo , M. C. Sanchez , C. Sanzeni , S. Schnetzer , S. Seidel , A. Seiden , I. Schmidt , A. Shenai , T. Shutt , Y. Silver , W. Smith , D. Snowden-Ifft , A. Sonnenschein , D. Southwick , L. Spiegel , M. Stanitzki , S. Striganov , D. Su , R. Sumner , R. Svoboda , M. Sweany , R. Talaga , R. Tayloe , S. Tentindo , N. Terentiev , J. Thom-Levy , C. Thorn , J. Tiffenberg , W. Trischuk , R. Tschirhart , M. Turner , D. Underwood , L. Uplegger , J. Urheim , M. Vagins , K. Van Bibber , G. Varner , R. Varner , J. Va'vra , H. Von der Lippe , R. Wagner , S. Wagner , C. Weaverdyck , H. Wenzel , A. Weinstein , M. Wetstein , A. White , R. Wigman , P. Wilson , D. Winn , P. Winter , C. Woody , L. Xia , J. Q. Xie , Z. Ye , M. F. Yeh , T. Yetkin , J. H. Yoo , J. Yu , J. M. Yu , S. Zeller , J. L. Zhang , J. J. Zhu , B. Zhou , R. Y. Zhu , B. Zitzer

The Fermilab Main Injector accelerating cavities have sparking issues when they are run at voltages higher than those required by the PIP-II project. This is a problem Fermilab is working on as planning begins for the next upgrade to the…

Accelerator Physics · Physics 2025-08-06 Susanna Stevenson

Many modern and future particle accelerators employ high gradient superconducting RF (SRF) to generate beams of high energy, high intensity and high brightness for research in high energy and nuclear physics, basic energy sciences, etc. In…

We present progress on the development of a machine learning (ML) regulation system for third-order resonant extraction of the beam delivered to the Mu2e experiment at Fermilab. We consider classical and ML-based controllers optimized on…

Recent results from JLab on the electromagnetic excitation of nucleon resonances are presented, and confronted with theoretical predictions. Preliminary data in the search for undiscovered states are discussed as well.

High Energy Physics - Phenomenology · Physics 2014-11-17 Volker D. Burkert

This is a collection of proposals of experiments at hadronic beams of 10 GeV accelerator, situated at the Institute of Theoretical and Experimental Physics (Moscow, Russia). The proposals were presented by the leaders of several ITEP…

The problems concerning a possible discovery of the mini block holes at earthly accelerators are discussed.

General Relativity and Quantum Cosmology · Physics 2007-05-23 V. A. Petrov

A study on future large accelerators [1] has considered a facility, which is designed, built and operated by a worldwide collaboration of equal partner institutions, and which is remote from most of these institutions. The full range of…

Accelerator Physics · Physics 2008-11-26 P. Czarapata , D. Hartill , S. Myers , S. Peggs , N. Phinney , M. Serio , N. Toge , F. Willeke , C. Zhang

Following the PIP-II 800 MeV Linac, Fermilab will need an accelerator that extends from that linac to the MI injection energy of ~8 GeV, completing the modernization of the Fermilab high-intensity accelerator complex. This will maximize the…

The event selection developed for the Fermi Large Area Telescope before launch has been periodically updated to reflect the constantly improving knowledge of the detector and the environment in which it operates. Pass 7, released to the…

This paper describes the design and construction of the MicroBooNE liquid argon time projection chamber and associated systems. MicroBooNE is the first phase of the Short Baseline Neutrino program, located at Fermilab, and will utilize the…

Instrumentation and Detectors · Physics 2023-02-17 MicroBooNE Collaboration , R. Acciarri , C. Adams , R. An , A. Aparicio , S. Aponte , J. Asaadi , M. Auger , N. Ayoub , L. Bagby , B. Baller , R. Barger , G. Barr , M. Bass , F. Bay , K. Biery , M. Bishai , A. Blake , V. Bocean , D. Boehnlein , V. D. Bogert , T. Bolton , L. Bugel , C. Callahan , L. Camilleri , D. Caratelli , B. Carls , R. Castillo Fernandez , F. Cavanna , S. Chappa , H. Chen , K. Chen , C. Y. Chi , C. S. Chiu , E. Church , D. Cianci , G. H. Collin , J. M. Conrad , M. Convery , J. Cornele , P. Cowan , J. I. Crespo-Anadon , G. Crutcher , C. Darve , R. Davis , M. Del Tutto , D. Devitt , S. Duffin , S. Dytman , B. Eberly , A. Ereditato , D. Erickson , L. Escudero Sanchez , J. Esquivel , S. Farooq , J. Farrell , D. Featherston , B. T. Fleming , W. Foreman , A. P. Furmanski , V. Genty , M. Geynisman , D. Goeldi , B. Goff , S. Gollapinni , N. Graf , E. Gramellini , J. Green , A. Greene , H. Greenlee , T. Griffin , R. Grosso , R. Guenette , A. Hackenburg , R. Haenni , P. Hamilton , P. Healey , O. Hen , E. Henderson , V Hewes , C. Hill , K. Hill , L. Himes , J. Ho , G. Horton-Smith , D. Huffman , C. M. Ignarra , C. James , E. James , J. Jan de Vries , W. Jaskierny , C. M. Jen , L. Jiang , B. Johnson , M. Johnson , R. A. Johnson , B. J. P. Jones , J. Joshi , H. Jostlein , D. Kaleko , L. N. Kalousis , G. Karagiorgi , T. Katori , P. Kellogg , W. Ketchum , J. Kilmer , B. King , B. Kirby , M. Kirby , E. Klein , T. Kobilarcik , I. Kreslo , R. Krull , R. Kubinski , G. Lange , F. Lanni , A. Lathrop , A. Laube , W. M. Lee , Y. Li , D. Lissauer , A. Lister , B. R. Littlejohn , S. Lockwitz , D. Lorca , W. C. Louis , G. Lukhanin , M. Luethi , B. Lundberg , X. Luo , G. Mahler , I. Majoros , D. Makowiecki , A. Marchionni , C. Mariani , D. Markley , J. Marshall , D. A. Martinez Caicedo , K. T. McDonald , D. McKee , A. McLean , J. Mead , V. Meddage , T. Miceli , G. B. Mills , W. Miner , J. Moon , M. Mooney , C. D. Moore , Z. Moss , J. Mousseau , R. Murrells , D. Naples , P. Nienaber , B. Norris , N. Norton , J. Nowak , M. OBoyle , T. Olszanowski , O. Palamara , V. Paolone , V. Papavassiliou , S. F. Pate , Z. Pavlovic , R. Pelkey , M. Phipps , S. Pordes , D. Porzio , G. Pulliam , X. Qian , J. L. Raaf , V. Radeka , A. Rafique , R. A Rameika , B. Rebel , R. Rechenmacher , S. Rescia , L. Rochester , C. Rudolf von Rohr , A. Ruga , B. Russell , R. Sanders , W. R. Sands , M. Sarychev , D. W. Schmitz , A. Schukraft , R. Scott , W. Seligman , M. H. Shaevitz , M. Shoun , J. Sinclair , W. Sippach , T. Smidt , A. Smith , E. L. Snider , M. Soderberg , M. Solano-Gonzalez , S. Soldner-Rembold , S. R. Soleti , J. Sondericker , P. Spentzouris , J. Spitz , J. St. John , T. Strauss , K. Sutton , A. M. Szelc , K. Taheri , N. Tagg , K. Tatum , J. Teng , K. Terao , M. Thomson , C. Thorn , J. Tillman , M. Toups , Y. T. Tsai , S. Tufanli , T. Usher , M. Utes , R. G. Van de Water , C. Vendetta , S. Vergani , E. Voirin , J. Voirin , B. Viren , P. Watkins , M. Weber , T. Wester , J. Weston , D. A. Wickremasinghe , S. Wolbers , T. Wongjirad , K. Woodruff , K. C. Wu , T. Yang , B. Yu , G. P. Zeller , J. Zennamo , C. Zhang , M. Zuckerbrot

The Warm Front End (WFE) of the Proton Improvement Plan II Injector Test at Fermilab has been constructed to its full length. It includes a 15-mA DC, 30-keV H- ion source, a 2 m-long Low Energy Beam Transport (LEBT) with a switching dipole…

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