Brilliant X-rays using a two-stage plasma insertion device

Particle accelerators have made an enormous impact in all fields of natural sciences, from elementary particle physics, to the imaging of proteins and the development of new pharmaceuticals. Modern light sources have advanced many fields by providing extraordinarily bright, short X-ray pulses. Here...

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المؤلفون الرئيسيون: Holloway, J, Norreys, P, Thomas, A, Bartolini, R, Bingham, R, Nydell, J, Trines, R, Walker, R, Wing, M
التنسيق: Journal article
اللغة:English
منشور في: Springer Nature 2017
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author Holloway, J
Norreys, P
Thomas, A
Bartolini, R
Bingham, R
Nydell, J
Trines, R
Walker, R
Wing, M
author_facet Holloway, J
Norreys, P
Thomas, A
Bartolini, R
Bingham, R
Nydell, J
Trines, R
Walker, R
Wing, M
author_sort Holloway, J
collection OXFORD
description Particle accelerators have made an enormous impact in all fields of natural sciences, from elementary particle physics, to the imaging of proteins and the development of new pharmaceuticals. Modern light sources have advanced many fields by providing extraordinarily bright, short X-ray pulses. Here we present a novel numerical study, demonstrating that existing third generation light sources can significantly enhance the brightness and photon energy of their X-ray pulses by undulating their beams within plasma wakefields. This study shows that a three order of magnitude increase in X-ray brightness and over an order of magnitude increase in X-ray photon energy is achieved by passing a 3 GeV electron beam through a two-stage plasma insertion device. The production mechanism micro-bunches the electron beam and ensures the pulses are radially polarised on creation. We also demonstrate that the micro-bunched electron beam is itself an effective wakefield driver that can potentially accelerate a witness electron beam up to 6 GeV.
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spelling oxford-uuid:1de8bc28-a03c-4f14-bd8f-40287a420a1b2022-03-26T11:13:30ZBrilliant X-rays using a two-stage plasma insertion deviceJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:1de8bc28-a03c-4f14-bd8f-40287a420a1bEnglishSymplectic Elements at OxfordSpringer Nature2017Holloway, JNorreys, PThomas, ABartolini, RBingham, RNydell, JTrines, RWalker, RWing, MParticle accelerators have made an enormous impact in all fields of natural sciences, from elementary particle physics, to the imaging of proteins and the development of new pharmaceuticals. Modern light sources have advanced many fields by providing extraordinarily bright, short X-ray pulses. Here we present a novel numerical study, demonstrating that existing third generation light sources can significantly enhance the brightness and photon energy of their X-ray pulses by undulating their beams within plasma wakefields. This study shows that a three order of magnitude increase in X-ray brightness and over an order of magnitude increase in X-ray photon energy is achieved by passing a 3 GeV electron beam through a two-stage plasma insertion device. The production mechanism micro-bunches the electron beam and ensures the pulses are radially polarised on creation. We also demonstrate that the micro-bunched electron beam is itself an effective wakefield driver that can potentially accelerate a witness electron beam up to 6 GeV.
spellingShingle Holloway, J
Norreys, P
Thomas, A
Bartolini, R
Bingham, R
Nydell, J
Trines, R
Walker, R
Wing, M
Brilliant X-rays using a two-stage plasma insertion device
title Brilliant X-rays using a two-stage plasma insertion device
title_full Brilliant X-rays using a two-stage plasma insertion device
title_fullStr Brilliant X-rays using a two-stage plasma insertion device
title_full_unstemmed Brilliant X-rays using a two-stage plasma insertion device
title_short Brilliant X-rays using a two-stage plasma insertion device
title_sort brilliant x rays using a two stage plasma insertion device
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