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通过康普顿背散射产生阿秒X射线和伽马射线。

Generation of attosecond x-ray and gamma-ray via Compton backscattering.

作者信息

Chung Sang-Young, Yoon Moohyun, Kim Dong Eon

机构信息

Physics Department, POSTECH, Pohang, Kyungbuk, Korea.

出版信息

Opt Express. 2009 May 11;17(10):7853-61. doi: 10.1364/oe.17.007853.

Abstract

The generation of an isolated attosecond gamma-ray pulse utilizing Compton backscattering of a relativistic electron bunch has been investigated. The energy of the electron bunch is modulated while the electron bunch interacts with a co-propagating few-cycle CEP (carrier envelope phase)-locked laser in a single-period wiggler. The energy-modulated electron bunch interacts with a counter-propagating driver laser, producing Compton back-scattered radiation. The energy modulation of the electron bunch is duplicated to the temporal modulation of the photon energy of Compton back-scattered radiation. The spectral filtering using a crystal spectrometer allows one to obtain an isolated attosecond gamma-ray.

摘要

利用相对论电子束的康普顿背散射产生孤立阿秒伽马射线脉冲的研究已经展开。在电子束与共传播的少周期载波包络相位(CEP)锁定激光在单周期摆动器中相互作用时,对电子束的能量进行调制。能量调制后的电子束与反向传播的驱动激光相互作用,产生康普顿背散射辐射。电子束的能量调制被复制到康普顿背散射辐射光子能量的时间调制上。使用晶体光谱仪进行光谱滤波可使人们获得孤立的阿秒伽马射线。

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