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Improvement of photon energy at X-ray free-electron lasers using plasma-based afterburner
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作者 Letian Liu Qianyi Ma +11 位作者 Yuhui Xia Zhenan Wang Yuekai Chen Zhiyan Yang Dongchi Cai Zewei Xu Ziyao Tang Jianghao Hu Weiming An Chao Feng Xueqing Yan Xinlu Xu 《Matter and Radiation at Extremes》 2025年第4期35-43,共9页
X-ray free-electron lasers(XFELs)can generate bright X-ray pulses with short durations and narrow bandwidths,leading to extensive applica-tions in many disciplines such as biology,materials science,and ultrafast scien... X-ray free-electron lasers(XFELs)can generate bright X-ray pulses with short durations and narrow bandwidths,leading to extensive applica-tions in many disciplines such as biology,materials science,and ultrafast science.Recently,there has been a growing demand for X-ray pulses with high photon energy,especially from developments in“diffraction-before-destruction”applications and in dynamic mesoscale materials science.Here,we propose utilizing the electron beams at XFELs to drive a meter-scale two-bunch plasma wakefield accelerator and double the energy of the accelerated beam in a compact and inexpensive way.Particle-in-cell simulations are performed to study the beam quality degradation under different beam loading scenarios and nonideal issues,and the results show that more than half of the accelerated beam can meet the requirements of XFELs.After its transport to the undulator,the accelerated beam can improve the photon energy to 22 keV by a factor of around four while maintaining the peak power,thus offering a promising pathway toward high-photon-energy XFELs. 展开更多
关键词 plasma based afterburner electron beams photon energy x ray free electron lasers dynamic mesoscale materials science diffraction destruction dynamic mesoscale materials scienceherewe plasma wakefield accelerator
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