首页> 外文会议>NATO advanced research workshop on electron-photon interaction in dense media >PARAMETRIC X-RAY RADIATION, TRANSITION RADIATION AND BREMSSTRAHLUNG IN X-RAY REGION. A COMPARATIVE ANALYSIS
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PARAMETRIC X-RAY RADIATION, TRANSITION RADIATION AND BREMSSTRAHLUNG IN X-RAY REGION. A COMPARATIVE ANALYSIS

机译:X射线区域的参数X射线辐射,转变辐射和BREMSSTRAHLUNG。比较分析

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The diffraction of the real photons (BS or TR) is more intense than diffraction of the virtual photons (PXR) for thick mosaic crystals. The suppression of the bremsstrahlung and axial channeling radiation in the X-ray region (ω ≤ γω_p) for initial electron energy less than 1 GeV observed in our experiment is connected with the effect of the medium polarization. Due to this effect the transition radiation should be considered as the most intense source of photons in the range ω < γω_p. In opposite case (ω >γω_p) the most intense source is the axial channeling radiation. The usage of a crystal-monochromator allows to obtain the photon beam with ~ 1% bandwidth with some intensity loss. The reflection efficiency of a pyrolitic graphite achieves ~ 20% in the ~ 10 keV region. The periodic foil stack target could provide the significant growth of the initial beam intensity. But such factors as electron multiple scattering, target imperfectness, finite beam collimation angle entail the deterioration of the resonant condition. As a consequent the typical value of the monochromaticity of RTR beam is around 10% that may demand the following monochromatization. In this case the foam target from a light substance with pore sizes compared with formation length may provide the similar intensity of the photon beam as a RTR target.
机译:真正的光子(BS或TR)的衍射比虚拟光子(PXR)厚镶嵌晶体的衍射更加激烈。在X射线区域中的轫致辐射和轴向窜辐射(ω≤γω_p),用于初始电子能量小于1 GeV的在我们的实验中观察到的抑制与介质极化的作用相连。由于此效果的过渡辐射应被视为在范围ω<γω_p光子的最强烈的源。在相反的情况下(ω>γω_p)最激烈的源是轴向窜辐射。一个晶体单色器的使用允许获得与一些强度损失约1%的带宽光子束。的热解石墨达到〜20%的在〜10千电子伏区域的反射效率。周期性箔堆叠目标可以提供初始的光束强度的显著增长。但这样的因素如电子多重散射,目标不完善,有限光束准直角度继承权谐振条件的恶化。由于随之而来的RTR束的单色的典型值是10%左右,可能需要从以下单色化。在这种情况下从与孔径光物质的泡沫的目标大小与地层长度相比可以提供光子束作为RTR目标的类似强度。

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