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Transition edge sensor system for material analysis using transmission electron microscope

机译:使用透射电子显微镜进行材料分析的过渡边缘传感器系统

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We have developed a Transition Edge Sensor (TES) - Energy Dispersive Spectroscopy (EDS) for Transmission Electron Microscope (TEM) based on a dilution refrigerator. The dilution refrigerator was cooled by liquid helium (L-He), which was supplied from an L-He container separated from the dilution refrigerator. We adopted the hybrid magnetic shields combining a permalloy shield and a NbTi/Nb/Cu superconducting shield to operate the TEM-TES system under a magnetic field of 200 mT. The permalloy shield was used to prevent the ambient magnetic field until the NbTi superconducting shield cooled from room temperature (RT) to 2 K. The critical magnetic field was 220 mT for the TES change from a superconducting state to a normal state. The SQUID - current vs. bias current curve, under the condition that the snout was inserted in the TEM, was equal to the curve of the snout that was out of the TEM. The C (0 0 2) planes could be observed at 120 kV under the condition the snout was inserted in the TEM.
机译:我们已经开发了基于稀释冰箱的透射边缘传感器(TES)-透射电子显微镜(TEM)的能量色散光谱(EDS)。稀释制冷机由液氦(L-He)冷却,液氦由与稀释制冷机分开的L-He容器提供。我们采用了结合坡莫合金屏蔽层和NbTi / Nb / Cu超导屏蔽层的混合磁屏蔽层,在200 mT磁场下操作TEM-TES系统。坡莫合金屏蔽层一直用于防止环境磁场,直到NbTi超导屏蔽层从室温(RT)冷却至2K。TES从超导状态变为正常状态的临界磁场为220 mT。在将管嘴插入TEM中的条件下,SQUID-电流与偏置电流的曲线等于从TEM处出来的管嘴的曲线。在将管嘴插入TEM的条件下,可以在120 kV下观察到C(0 0 2)平面。

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