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激光加速器中电子能量增益的广义协变推导 被引量:5
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作者 朱莳通 沈文达 +1 位作者 邱锡铭 王之江 《物理学报》 SCIE EI CAS CSCD 北大核心 1989年第4期559-566,共8页
本文通过广义协变的坐标变换导出了激光电子加速器中能量增益的表达式,指出即使不存在外加的引力场,电子也会因背景介质的影响产生一个附加的引力加速,在真空情况,所得结果与用洛仑兹变换得到的结果一致。
关键词 激光加速器 电子能量增益 广义协变
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Further Acceleration of MeV Electrons by a Relativistic Laser Pulse
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作者 HEFeng YUWei +5 位作者 LUPei-Xiang XUHan SHENBai-Fei QIANLie-Jia LIRu-Xin XUZhi-Zhan 《Communications in Theoretical Physics》 SCIE CAS CSCD 2005年第5期910-914,共5页
With the development of photocathode rf electron gun, electrons with high-brightness and mono-energy can be obtained easily. By numerically solving the relativistic equations of motion of an electron generated from th... With the development of photocathode rf electron gun, electrons with high-brightness and mono-energy can be obtained easily. By numerically solving the relativistic equations of motion of an electron generated from this facility in laser fields modelled by a circular polarized Gaussian laser pulse, we find the electron can obtain high energy gain from the laser pulse. The corresponding acceleration distance for this electron driven by the ascending part of the laser pulse is much longer than the Rayleigh length, and the light amplitude experienced on the electron is very weak when the laser pulse overtakes the electron. The electron is accelerated effectively and the deceleration can be neglected.For intensities around 1019 W·μm2/cm2,an electron's energy gain near 0.1 GeV can be realized when its initial energy is 4.5 MeV, and the final velocity of the energetic electron is parallel with the propagation axis. The energy gain can be up to 1 GeV if the intensity is about 1021 W·μm2/cm2.The final energy gain of the electron as a function of its initial conditions and the parameters of the laser beam has also been discussed. 展开更多
关键词 electron acceleration energy gain laser FEMTOSECOND
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计算激光等离子体参数的数学模型 被引量:3
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作者 邹彪 《数学的实践与认识》 CSCD 北大核心 2004年第7期9-11,共3页
在相关物理知识的基础上 ,给出了计算激光等离子体参数的数学模型 ,通过实验验证 ,用该模型所得结果与使用其他方法所得结果基本吻合 .
关键词 等离子体参数 数学模型 电子能量增益 场强 有效激光功率密度
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