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Sub-Kelvin magnetic and electrical measurements in a diamond anvil cell with

机译:在金刚石砧座中的亚开尔文磁和电测量

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摘要

We discuss techniques for performing continuous measurements across a wide range of pressure-fielderature phase space, combining the milli-Kelvin temperatures of a helium dilution refrigerator with the giga-Pascal pressures of a diamond anvil cell and the Tesla magnetic fields of a superconducting magnet. With a view towards minimizing remnant magnetic fields and background magnetic susceptibility, we characterize high-strength superalloy materials for the pressure cell assembly, which allows high fidelity measurements of low-field phenomena such as superconductivity below 100 mK at pressures above 10 GPa. In situ tunability and measurement of the pressure permit experiments over a wide range of pressure, while at the same time making possible precise steps across abrupt phase transitions such as those from insulator to metal.
机译:我们讨论了在广泛的压力场相空间内进行连续测量的技术,将氦稀释冰箱的毫开氏温度与金刚石砧座的千兆帕斯卡压力以及超导磁体的特斯拉磁场相结合。为了最大程度地减少残留磁场和背景磁化率,我们对压力电池组件的高强度超级合金材料进行了表征,该材料可对低场现象进行高保真度测量,例如在10 GPa以上的压力下低于100 mK的超导性。现场可调谐性和压力测量允许在广泛的压力范围内进行实验,同时使跨越突然相变(例如从绝缘体到金属的相变)的精确步骤成为可能。

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