论文标题

磁性特性测量的几何学矩校正方法3超导量子干扰装置振动样品磁力计

A geometry-independent moment correction method for the Magnetic Property Measurement 3 Superconducting Quantum Interference Device-Vibrating Sample Magnetometer

论文作者

Amorim, C. O., Mohseni, F., Amaral, V. S., Amaral, J. S.

论文摘要

现代超导量子干扰装置(Squid)磁力计的灵敏度和自动化功能目前是无与伦比的。但是,测得的力矩值由于几何效应,即样本量,形状和径向偏移而容易偏离其实际值的偏差。这是众所周知的,知识渊博的操作员将纠正这些效果的测量力矩值。 磁性测量3(MPMS3)磁力计的当前过程基于可用的仿真工具,对振动样品磁力计(VSM)和直流电流(DC)方法有效。尽管如此,确定校正因子还需要具有明确定义的几何形状以及准确的样品尺寸,并且通常难以确定径向偏移的样品。此外,目前尚无适当的解决方案来纠正不规则样品的几何影响。 在这项工作中,我们发现VSM和DC测量之间的差异与MPMS3 Squid-VSM设备的相应校正因子之间的系统关系。对于给定的DC扫描长度和VSM振幅值,这种关系遵循了一个明显的趋势,与样本量,形状或径向偏移无关。利用这一趋势,这里通过使用最佳样品安装来提出和验证一种与几何学无关的校正方法。

The sensitivity and automation capabilities of modern superconducting quantum interference device (SQUID) magnetometers are currently unmatched. The measured moment values are, however, prone to deviations from their actual value due to geometric effects, namely sample size, shape, and radial offset. This is well known, and a knowledgeable operator will correct measured moment values taking these effects into account. The current procedure for the Magnetic Property Measurement 3 (MPMS3) magnetometer is based on an available simulation tool, valid for both Vibrating Sample Magnetometer (VSM) and Direct Current (DC) methods. Still, determining the correction factor requires samples with well-defined geometric shapes together with accurate sample dimensions and the usually difficult to determine radial offset. Additionally, at the moment, there is not a proper solution to correct geometry effects of irregular shaped samples. In this work, we find a systematic relation between the difference between the VSM and DC measurements and their corresponding correction factors for MPMS3 SQUID-VSM device. This relation follows a clear trend, independent of sample size, shape or radial offset, for a given pair of DC scan length and VSM amplitude values. Exploiting this trend, a geometry-independent correction method is here presented and validated by measurements of metallic Fe powder using a far from optimal sample mounting.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源