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首页> 外文期刊>St. Petersburg Polytechnic University Journal: Physics and Mathematics >A small-amplitude crystalline undulator based on 20?GeV electrons and positrons: Simulations
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A small-amplitude crystalline undulator based on 20?GeV electrons and positrons: Simulations

机译:基于20?GeV电子和正电子的小幅度晶体起伏器:模拟

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This paper presents the results of numerical simulations of a crystalline undulator based on the channeling of 20?GeV electrons and positrons. The device considered is characterized by a small amplitude and a short period of periodic bending. Calculations have been performed accounting for all-atom interactions using the MBN Explorer software package. The effect of low crystal thickness (less than a channeling oscillations period) on radiation spectrum was studied. A new scheme to product a high-energy radiation was proposed. It is based on short-period small-amplitude crystalline undulator and allows decreasing the intensity of the non-undulator part of the spectrum.
机译:本文介绍了基于20?GeV电子和正电子通道的晶体波动器的数值模拟结果。所考虑的设备的特点是振幅小和周期弯曲的周期短。已经使用MBN Explorer软件包考虑了所有原子的相互作用进行了计算。研究了低晶体厚度(小于沟道振荡周期)对辐射光谱的影响。提出了产生高能辐射的新方案。它基于短周期小振幅晶体波荡器,并允许降低频谱中非波荡器部分的强度。

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