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Enhanced betatron radiation by a modulating laser pulse in laser wakefield acceleration

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Abstract
We propose a new idea to enhance and control the betatron radiation by using a modulating laser pulse in laser wakefield acceleration. In this scheme, a high-power laser pulse is used for self-trapping and acceleration of the plasma electrons and the accelerated electron beam is modulated by a separately-propagating laser pulse for large amplitude betatron oscillations and microbunching. In this way, the relatively low power modulating laser pulse can enhance the X-ray photon flux and energy significantly. We performed two-dimensional particle-in-cell simulations to demonstrate the idea and the results show that a sub-TW laser pulse is enough for electron beam modulation and it can generate easily-controllable fs X-ray pulses with a wide range of photon energies from soft X-rays to hard X-rays.
Author(s)
Lee, SeungwooUhm, Han SupKang, Tae YeonHur, Min SupSuk, Hyyong
Issued Date
2019-04
Type
Article
DOI
10.1016/j.cap.2019.01.018
URI
https://scholar.gist.ac.kr/handle/local/12796
Publisher
한국물리학회
Citation
Current Applied Physics, v.19, no.4, pp.464 - 469
ISSN
1567-1739
Appears in Collections:
Department of Physics and Photon Science > 1. Journal Articles
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