Magnetostriction measurements at milli-kelvin temperatures using a Fabry-Pérot interferometer.

Finnian J. Blaauw-Smith, Luke S. Trainor, Gavin G. G. King, N. J. Lambert, Masaya Hiraishi, J. Longdell
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Abstract

This paper demonstrates an optical technique to measure magnetostrictive strain in a cryogenic environment using a Fabry-Pérot resonator spaced by crystal samples. Optical measurement techniques are calibration-free and highly sensitive. This technique was used to measure the magnetostrictive strain of neodymium gallate at a temperature of 49 mK to be λ = 1.3 × 10-5 at 3 T, with a sensitivity of 3.0 × 10-8. We highlight the interesting properties of the crystal's magnetic ordering. The sensitivity of this technique was limited by the wavemeter used to measure the laser frequency, and significant improvements in the sensitivity should be possible.
利用法布里-佩罗干涉仪在毫开尔文温度下测量磁致伸缩。
本文展示了一种在低温环境中使用法布里-佩罗共振器(Fabry-Pérot resonator)测量磁致伸缩应变的光学技术。光学测量技术无需校准,灵敏度高。利用该技术测量了温度为 49 mK 的没食子酸钕的磁致伸缩应变,在 3 T 时为 λ = 1.3 × 10-5,灵敏度为 3.0 × 10-8。我们强调了晶体磁有序的有趣特性。这项技术的灵敏度受到用于测量激光频率的波长计的限制,灵敏度应该可以得到显著提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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