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Related papers: Fermilab Program and Plans

200 papers

Project X is a multi-megawatt proton facility being developed to support intensity frontier research in elementary particle physics, with possible applications to nuclear physics and nuclear energy research, at Fermilab. The centerpiece of…

Accelerator Physics · Physics 2012-08-29 S. Nagaitsev

High-energy accelerators are large projects funded by public money, developed over the years and constructed via major industrial contracts both in advanced technology and in more conventional domains such as civil engineering and…

Accelerator Physics · Physics 2012-07-23 Philippe Lebrun , Peter Garbincius

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

We present a status update on the dedicated R\&D facility SINBAD which is currently under construction at DESY. The facility will host multiple independent experiments on the acceleration of ultra-short electron bunches and novel, high…

A 2.1 MeV, 10 mA CW RFQ has been installed and commissioned at Fermilab's test accelerator known as PIP-II Injector Test. This report describes the measurements of the beam properties after acceleration in the RFQ, including the energy and…

Accelerator Physics · Physics 2017-09-25 A. Shemyakin , J. -P. Carneiro , B. Hanna , L. Prost , A. Saini , V. Scarpine , V. L. S. Sista , J. Steimel

Accelerator radio frequency (RF) technology has been and remains critical for modern high energy physics (HEP) experiments based on particle accelerators. Tremendous progress in advancing this technology has been achieved over the past…

The Long Baseline Neutrino Experiment (LBNE) will utilize a neutrino beamline facility located at Fermilab. The facility is designed to aim a beam of neutrinos toward a detector placed in South Dakota. The neutrinos are produced in a…

The current Timing System at Fermilab has been around for 40 years and currently relies on 7 CAMAC crates and over 100 CAMAC cards to produce the Tevatron Clock (TCLK). Thanks to the ingenuity of those before us, this has allowed Fermilab…

Accelerator Physics · Physics 2025-10-21 M. R. Austin , L. Carmichael , D. McArthur , E. Milton , A. Quilty

Over the course of the past years the experimental measurements performed by the two large collaborations, CDF and D{\O}, at the Fermilab Tevatron Collider have fueled advances in our understanding of physics at the energy frontier. At the…

High Energy Physics - Experiment · Physics 2016-08-31 H. E. Montgomery

The Integrable Optics Test Accelerator (IOTA) is a storage ring for advanced beam physics research currently being built and commissioned at Fermilab. It will operate with protons and electrons using injectors with momenta of 70 and 150…

The Proton Improvement Plan phase II (PIP-II) project currently under construction at FNAL will replace the existing 400 MeV normal conducting linac with a new 800 MeV superconducting linac. The beam power in the downstream rapid-cycling…

Accelerator Physics · Physics 2024-06-03 J. -F. Ostiguy , C. M. Bhat

These lectures aim to describe instruments and methods used for measuring beam parameters in particle accelerators. Emphasis will be given to new detection and analysis techniques in each field of accelerator instrumentation. A clear…

Accelerator Physics · Physics 2016-01-20 M. Gasior , R. Jones , T. Lefevre , H. Schmickler , K. Wittenburg

The Long Baseline Neutrino Experiment (LBNE) will utilize a neutrino beamline facility located at Fermilab to carry out a compelling research program in neutrino physics. The facility will aim a beam of neutrinos toward a detector placed at…

Accelerator Physics · Physics 2013-01-30 R. Andrews , A. Z. Chen , S. C. Childress , C. D. Moore , V. Papadimitriou , M. R. Campbell

The upcoming long baseline neutrino experiments aim to enhance proton beam power to multi-MW scale and utilize large-scale detectors to address the challenge of limited event statistics. The DUNE experiment at LBNF will test the three…

Accelerator Physics · Physics 2024-07-12 Ganguly Sudeshna

The 2020 update of the European Strategy for Particle Physics emphasised the importance of an intensified and well-coordinated programme of accelerator R&D, supporting the design and delivery of future particle accelerators in a timely,…

Accelerator Physics · Physics 2022-04-01 C. Adolphsen , D. Angal-Kalinin , T. Arndt , M. Arnold , R. Assmann , B. Auchmann , K. Aulenbacher , A. Ballarino , B. Baudouy , P. Baudrenghien , M. Benedikt , S. Bentvelsen , A. Blondel , A. Bogacz , F. Bossi , L. Bottura , S. Bousson , O. Brüning , R. Brinkmann , M. Bruker , O. Brunner , P. N. Burrows , G. Burt , S. Calatroni , K. Cassou , A. Castilla , N. Catalan-Lasheras , E. Cenni , A. Chancé , N. Colino , S. Corde , L. Corner , B. Cros , A. Cross , J. P. Delahaye , G. Devanz , A. -I. Etienvre , P. Evtushenko , A. Faus-Golfe , P. Fazilleau , M. Ferrario , A. Gallo , L. García-Tabarés , C. Geddes , F. Gerigk , F. Gianotti , S. Gilardoni , A. Grudiev , E. Gschwendtner , G. Hoffstaetter , M. Hogan , S. Hooker , A. Hutton , R. Ischebeck , K. Jakobs , P. Janot , E. Jensen , J. Kühn , W. Kaabi , D. Kayran , M. Klein , J. Knobloch , M. Koratzinos , B. Kuske , M. Lamont , A. Latina , P. Lebrun , W. Leemans , D. Li , K. Long , D. Longuevergne , R. Losito , W. Lu , D. Lucchesi , O. Lundh , E. Métral , F. Marhauser , S. Michizono , B. Militsyn , J. Mnich , E. Montesinos , N. Mounet , P. Muggli , P. Musumeci , S. Nagaitsev , T. Nakada , A. Neumann , D. Newbold , P. Nghiem , M. Noe , K. Oide , J. Osterhoff , M. Palmer , N. Pastrone , N. Pietralla , S. Prestemon , E. Previtali , T. Proslier , L. Quettier , T. Raubenheimer , B. Rimmer , L. Rivkin , E. Rochepault , C. Rogers , G. Rosaz , T. Roser , L. Rossi , R. Ruber , D. Schulte , M. Seidel , C. Senatore , B. Shepherd , J. Shi , N. Shipman , A. Specka , S. Stapnes , A. Stocchi , D. Stratakis , I. Syratchev , O. Tanaka , S. Tantawi , C. Tennant , E. Tsesmelis , C. Vaccarezza , A. -M. Valente , P. Védrine , J. Vieira , N. Vinokurov , H. Weise , M. Wenskat , P. Williams , M. Wing , A. Yamamoto , Y. Yamamoto , K. Yokoya , F. Zimmermann

The next generation of high-energy physics experiments requires high intensity protons in the multi-GeV energy range for efficient production of secondary beams. The Fermilab long-term future requires an 8 GeV proton source to feed the Main…

Accelerator Physics · Physics 2012-03-09 L. Jenner , C. Johnstone , D. Neuffer , J. Pasternak

This paper introduces a new method for stacking beams in the longitudinal phase space. It uses RF barriers to confine and compress beams in an accelerator, provided that the machine momentum acceptance is a few times larger than the…

Accelerator Physics · Physics 2007-05-23 Weiren Chou , Akira Takagi

The CHIPS R&D project aims to develop affordable large-scale water Cherenkov neutrino detectors for underwater deployment. In 2019, a 5kt prototype detector CHIPS-5 was deployed in northern Minnesota to potentially study neutrinos generated…

Fermilab's Superconducting RF Beam Test Facility currently under construction will produce electron beams capable of damaging the acceleration structures and the beam line vacuum chambers in the event of an aberrant accelerator pulse. The…

Accelerator Physics · Physics 2012-10-01 A. Warner , L. Carmichael , M. Church , R. Neswold

The MINERvA neutrino interaction experiment in the NuMI beam at Fermilab will measure several aspects of neutrino interactions in the few GeV energy region. We will make cross section and form factor measurements using a fine-grained fully…

High Energy Physics - Experiment · Physics 2008-11-26 Richard Gran