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An update is presented on a conceptual design for a pion production target station using a rotating cupronickel band and that was originally proposed for use at a muon collider facility with a 4 MW pulsed proton beam. After reviewing the…

Accelerator Physics · Physics 2009-11-06 B. J. King

A conceptual design is presented for a high power pion production target for muon colliders and neutrino factories that is based around a rotating metal band.

Accelerator Physics · Physics 2007-05-23 B. J. King , N. V. Mokhov , N. Simos , R. J. Weggel

A high-repetition-rate pulsed muon source operating at approximately 50\,kHz holds the potential to improve the sensitivity of various particle physics and material science experiments involving muons. In this article, we propose utilizing…

This study investigates how target geometry and material influence pion and muon production from an 8 GeV proton beam, in support of target-system design for a muon collider demonstrator. A 2 m long, 0.7 m radius solenoid with a 5 T peak…

Accelerator Physics · Physics 2026-02-19 Ruaa Al-Harthy

Conceptual designs of a superconducting dipole magnet for a Storage Ring of a Muon Collider with a 1.5 TeV center of mass (c.o.m.) energy and an average luminosity of 10 34 cm-2s-1 are presented. In contrast to proton machines, the dipoles…

Accelerator Physics · Physics 2015-06-04 I. Novitski , V. V. Kashikhin , N. Mokhov , A. V. Zlobin

Experimental and theoretical activities are underway at CERN with the aim of examining the feasibility of a very-high-flux neutrino source. In the present scheme, a high-power proton beam (some 4 MW) bombards a target where pions are…

Accelerator Physics · Physics 2014-11-18 G. Franchetti , S. Gilardoni , P. Gruber , K. Hanke , H. Haseroth , E. B. Holzer , D. Kuechler , A. M. Lombardi , R. Scrivens

The Muon Collider is one of the options considered as the next step in High Energy Physics. It bears many challenges, last not least in superconducting magnet technology. The target and capture solenoid is one of them, a channel of…

Accelerator Physics · Physics 2024-10-23 L. Bottura , C. Accettura , A. Kolehmainen , J. Lorenzo Gomez , A. Portone , P. Testoni

Besides continued work on the parameters of a 3-4 and 0.5 TeV CoM collider, many studies are now concentrating on a machine near 100 GeV that could be a factory for the s-channel production of Higgs particles. We mention the research on the…

Accelerator Physics · Physics 2007-05-23 R. Palmer , A. Sessler , A. Tollestrup , J. Gallardo

We present a muon capture front-end scheme for muon based applications. In this Front-End design, a proton bunch strikes a target and creates secondary pions that drift into a capture channel, decaying into muons. A series of rf cavities…

Accelerator Physics · Physics 2017-03-20 Diktys Stratakis , Scott Berg , David Neuffer

Cross section data from the HARP experiment for pion production by protons from a tantalum target have been convoluted with the acceptance of the front-end channel for the proposed neutrino factory or muon collider and integrated over the…

Accelerator Physics · Physics 2010-11-15 J. Strait , N. V. Mokhov , S. I. Striganov

The SciBooNE Collaboration has performed a search for charged current coherent pion production from muon neutrinos scattering on carbon, \nu_\mu ^{12}C \to \mu^- ^{12}C \pi^+, with two distinct data samples. No evidence for coherent pion…

High Energy Physics - Experiment · Physics 2009-01-16 SciBooNE Collaboration , K. Hiraide

We present FLUKA and MARS simulation studies of the pion production and energy deposition in the Neutrino Factory baseline target station, which consists of a 4 MW proton beam interacting with a liquid mercury jet target within a 20 T…

Accelerator Physics · Physics 2013-03-08 John J. Back , Chris Densham , Rob Edgecock , Gersende Prior

Conceptual designs of superconducting magnets for the storage ring of a Muon Collider with a 1.5 TeV c.o.m. energy and an average luminosity of 10 34 cm-2s-1 are presented. All magnets are based on Nb3Sn superconductor and designed to…

Accelerator Physics · Physics 2012-02-02 A. V. Zlobin , Y. I. Alexahin , V. V. Kashikhin , N. V. Mokhov

Meson factories are powerful drivers of diverse physics programmes. With beam powers already in the MW-regime attention has to be turned to target and beam line design to further significantly increase surface muon rates available for…

Instrumentation and Detectors · Physics 2016-02-24 F. Berg , L. Desorgher , A. Fuchs , W. Hajdas , Z. Hodge , P. -R. Kettle , A. Knecht , R. Lüscher , A. Papa , G. Rutar , M. Wohlmuther

The proposal of a high-intensity muon source driven by the CiADS linac, which has the potential to be one of the state-of-the-art facilities, is presented in this paper. We briefly introduce the development progress of the superconducting…

A new scheme to produce very low emittance muon beams using a positron beam of about 45~GeV interacting on electrons on target is presented. One of the innovative topics to be investigated is the behaviour of the positron beam stored in a…

Accelerator Physics · Physics 2018-08-01 M. Boscolo , M. Antonelli , O. R. Blanco-Garcia , S. Guiducci , S. Liuzzo , P. Raimondi , F. Collamati

A measurement of the double-differential $\pi^{\pm}$ production cross-section in proton--carbon, proton--copper and proton--tin collisions in the range of pion momentum $100 \MeVc \leq p < 800 \MeVc$ and angle $0.35 \rad \le \theta <2.15…

High Energy Physics - Experiment · Physics 2012-08-27 HARP Collaboration

We present results from MARS Monte Carlo simulations of the accepted pion and muon yields when a 10 GeV parabolic proton beam interacts with a solid or powdered (50% density) tungsten target for a Neutrino Factory. We compare these yields…

Accelerator Physics · Physics 2010-04-08 John Back

Measurements of the double-differential charged pion production cross-section in the range of momentum 100 MeV/c < p < 800 MeV/c and angle 0.35 < \theta < 2.15 rad in proton-beryllium, proton-carbon, proton-aluminium, proton-copper,…

High Energy Physics - Experiment · Physics 2012-08-27 HARP Collaboration

The Paul Scherrer Institut in Switzerland operates the high intensity proton accelerator facility HIPA. A 590 MeV kinetic energy proton beam of presently up to 2.4 mA is sent to target stations producing pions, muons and neutrons for…

High Energy Physics - Phenomenology · Physics 2016-07-26 Klaus Kirch
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