从矢量扫描-SQUID 显微镜测量中还原矢量磁化图像

Masahiko Hayashi, T. Ishida, H. Shishido, The Dang Vu, S. Kawamata
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引用次数: 0

摘要

本文提出了一种通用数学框架,用于处理使用三维矢量拾取线圈的扫描超导量子干涉装置(SQUID)显微镜测量的图像数据。从数值上减少了因传感器的超导性、非零传感器尺寸和传感器与样品之间的有限分离而产生的二磁效应所导致的图像模糊。我们使用测量系统的晶格模型,并采用奇异值分解和 Moore-Penrose 伪逆矩阵来处理数值过程中遇到的条件不良矩阵。在数值模型的基础上,我们演示了样品表面分布的矢量磁化测量,以及使用本程序进行的图像复原。
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Restoration of Vector Magnetization Image from Vector Scanning-SQUID Microscope Measurement
A generalized mathematical framework to treat image data measured by the scanning superconducting quantum interference device (SQUID) microscope using a three-dimensional vector pickup coil is presented. The blurring of the images originating from the effects of diamagnetism due to the superconductivity of the sensor, the non-zero sensor size, and the finite sensor-to-sample separation are numerically reduced. We use a lattice model of the measurement system, and singular value decomposition and the Moore-Penrose pseudo-inverse matrix are employed to handle ill-conditioned matrices we encounter in the numerical processes. Based on a numerical model, measurement of the vector magnetization distributed on a sample surface, and the image restoration using the present procedure are demonstrated.
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