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Magnetic measurements at pressures above 10 GPa in a miniature ceramic anvil cell for a superconducting quantum interference device magnetometer

机译:用于超导量子干涉仪磁力计的微型陶瓷砧室中压力高于10 GPa的磁性测量

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摘要

A miniature ceramic anvil high pressure cell (mCAC) was earlier designed by us for magnetic measurements at pressures up to 7.6 GPa in a commercial superconducting quantum interference magnetometer . Here, we describe methods to generate pressures above 10 GPa in the mCAC. The efficiency of the pressure generation is sharply improved when the Cu-Be gasket is sufficiently preindented. The maximum pressure for the 0.6 mm culet anvils is 12.6 GPa when the Cu-Be gasket is preindented from the initial thickness of 300–60 μm. The 0.5 mm culet anvils were also tested with a rhenium gasket. The maximum pressure attainable in the mCAC is about 13 GPa. The present cell was used to study YbCu2Si2 which shows a pressure induced transition from the non-magnetic to magnetic phases at 8 GPa. We confirm a ferromagnetic transition from the dc magnetization measurement at high pressure. The mCAC can detect the ferromagnetic ordered state whose spontaneous magnetic moment is smaller than 1 μB per unit cell. The high sensitivity for magnetic measurements in the mCAC may result from the simplicity of cell structure. The present study shows the availability of the mCAC for precise magnetic measurements at pressures above 10 GPa.
机译:我们早先设计了一种微型陶瓷砧高压电池(mCAC),用于在商用超导量子干涉磁力计中在高达7.6 GPa的压力下进行磁测量。在这里,我们描述了在mCAC中产生高于10 GPa压力的方法。当充分预先确定Cu-Be垫圈时,压力产生的效率将大大提高。当从300–60μm的初始厚度预先压入Cu-Be垫片时,0.6 mm底尖砧的最大压力为12.6 GPa。也用垫片测试了0.5毫米的底砧。 mCAC中可达到的最大压力约为13 GPa。本电池用于研究​​YbCu2Si2,它显示了在8 GPa压力引起的从非磁性相到磁性相的转变。我们通过高压下的直流磁化强度测量确定了铁磁跃迁。 mCAC可以检测到每单位晶胞的自发磁矩小于1μB的铁磁有序状态。 mCAC中磁测量的高灵敏度可能是由于细胞结构的简单性。本研究表明,在10 GPa以上的压力下,mCAC可用于精确的磁测量。

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