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Crystal undulator as a novel compact source of radiation

机译:水晶起伏器作为一种小巧的紧凑型辐射源

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A crystalline undulator (CU) with periodically deformed crystallographic planes is capable of deflecting charged particles with the same strength as an equivalent magnetic field of 1000 T and could provide quite a short period L in the sub-millimeter range. We present an idea for creation of a CU and report its first realization. One face of a silicon crystal was given periodic micro-scratches (grooves), with a period of 1 mm, by means of a diamond blade. The X-ray tests of the crystal deformation have shown that a sinusoidal-like shape of crystalline planes goes through the bulk of the crystal. This opens up the possibility for experiments with high-energy particles channeled in CU, a novel compact source of radiation. The first experiment on photon emission in CU has been started at LNF with 800 MeV positrons aiming to produce 50 keV undulator photons.
机译:具有周期性变形的晶体平面的晶体波浪(Cu)能够使带电颗粒与1000t的等同磁场相同的强度偏转,并且可以在子毫米范围内提供相当短的时段L.我们提出了创建CU并报告其首次实现的想法。通过金刚石刀片给出硅晶体的一张周期性微划伤(凹槽),周期为1mm。晶体变形的X射线试验表明,晶平面的正弦状形状通过大部分晶体。这使得在Cu中出现的高能颗粒进行实验,这是一种在Cu中的实验,这是一种新型紧凑的辐射源。在Cu中的光子发射的第一次试验已经在LNF中启动,其中800 MeV正向旨在产生50keV波形光子。

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