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Photon emission by ultra-relativistic positrons in crystalline undulators: the high-energy regime

机译:超相对论正电子在晶体起伏器中的光子发射:高能态

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摘要

This paper discusses the undulator radiation emitted by high-energy positrons during planar channeling in periodically bent crystals. We demonstrate that the construction of the undulator for positrons with energies of 10 GeV and above is only possible if one takes into account the radiative energy losses. The frequency of the undulator radiation depends on the energy of the particle. Thus the decrease of the particle's energy during the passage of the crystal should result in the destruction of the undulator radiation regime. However, we demonstrate that it is possible to avoid the destructive influence of the radiative losses on the frequency of the undulator radiation by the appropriate variation of the shape of the crystal channels. We also discuss a method by which, to our mind, it would be possible to prepare the crystal with the desired properties of its channels.
机译:本文讨论了高能正电子在周期性弯曲的晶体中进行平面沟道时发出的波动辐射。我们证明,只有在考虑到辐射能损失的情况下,能量为10 GeV及以上的正电子的波荡器的构造才有可能。起伏器辐射的频率取决于粒子的能量。因此,在晶体通过期间颗粒能量的减少将导致波动辐射范围的破坏。但是,我们证明,通过适当改变晶体通道形状,可以避免辐射损耗对波状辐射频率的破坏性影响。我们还讨论了一种方法,据我们所知,可以通过该方法制备具有所需通道特性的晶体。

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