Cite this article:
Tan Fang, Zhu Bin, Han Dan, Xin Jian-Ting, Zhao Zong-Qing, Cao Lei-Feng, Gu Yu-Qiu, Zhang Bao-Han. Numerical simulation for all-optical Thomson scattering X-ray sourceJ. Chin. Phys. B, 2014, 23(3): 034104.
| Tan Fang, Zhu Bin, Han Dan, Xin Jian-Ting, Zhao Zong-Qing, Cao Lei-Feng, Gu Yu-Qiu, Zhang Bao-Han. Numerical simulation for all-optical Thomson scattering X-ray sourceJ. Chin. Phys. B, 2014, 23(3): 034104. |
Numerical simulation for all-optical Thomson scattering X-ray source
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Abstract
Energy spectra, angular distributions, and temporal profiles of the photons produced by an all-optical Thomson scattering X-ray source are explored through numerical simulations based on the parameters of the SILEX-I laser system (800 nm, 30 fs, 300 TW) and the previous wakefield acceleration experimental results. The simulation results show that X-ray pulses with a duration of 30 fs and an emission angle of 50 mrad can be produced from such a source. Using the optimized electron parameters, X-ray pulses with better directivity and narrower energy spectra can be obtained. Besides the electron parameters, the laser parameters such as the wavelength, pulse duration, and spot size also affect the X-ray yield, the angular distribution, and the maximum photon energy, except the X-ray pulse duration which is slightly changed for the case of ultrafast laser–electron interaction. -
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