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Single-crystal X-ray diffraction and resonant X-ray magnetic scattering at helium-3 temperatures in high magnetic fields at beamline P09 at PETRA III

机译:PETRA III光束线P09在高磁场中氦3温度下的单晶X射线衍射和共振X射线磁散射

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摘要

The resonant scattering and diffraction beamline P09 at PETRA III at DESY is equipped with a 14 T vertical field split-pair magnet. A helium-3 refrigerator is available that can be fitted inside the magnet's variable-temperature insert. Here the results of a series of experiments aimed at determining the beam conditions permitting operations with the He-3 insert are presented. By measuring the tetragonal-to-orthorhombic phase transition occurring at 2.1 K in the Jahn-Teller compound TmVO$_{4}$, it is found that the photon flux at P09 must be attenuated down to 1.5 × 10$^{9}$ photons s$^{-1}$ for the sample to remain at temperatures below 800 mK. Despite such a reduction of the incident flux and the subsequent use of a Cu(111) analyzer, the resonant X-ray magnetic scattering signal at the Tm L$_{III}$ absorption edge associated with the spin-density wave in TmNi$_{2}$B$_{2}$C below 1.5 K is intense enough to permit a complete study in magnetic field and at sub-Kelvin temperatures to be carried out.
机译:DESY的PETRA III处的共振散射和衍射光束线P09配备了14 T垂直场分裂对磁体。提供了一个3氦冰箱,可以将其安装在磁体的可变温度插件中。这里介绍了一系列旨在确定允许使用He-3刀片进行操作的光束条件的实验结果。通过测量Jahn-Teller化合物TmVO $ _ {4} $中在2.1 K处发生的四方相到正​​交相变,发现必须将P09处的光子通量衰减至1.5×10 $ ^ {9}。 $光子s $ ^ {-1} $使样品保持在低于800 mK的温度下。尽管减少了入射通量并随后使用了Cu(111)分析仪,但在Tm L $ _ {III} $吸收边缘的共振X射线磁散射信号与TmNi $中的自旋密度波相关低于1.5 K的_ {2} $ B $ _ {2} $ C强度足以允许在磁场和低于开尔文温度下进行全面研究。

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