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Theoretical study of in-plane response of magnetic field sensor to magnetic beads in an in-plane homogeneous field

机译:磁场传感器对面内均匀场中磁珠的面内响应的理论研究

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摘要

We present a systematic theoretical study of the average in-plane magnetic field on square and rectangular magnetic field sensors from a single magnetic bead and a monolayer of magnetic beads magnetized by an in-plane externally applied homogeneous magnetic field. General theoretical expressions are derived such that the sensor response and its dependence on the sensor size, spacer layer thickness, bead diameter, and bead susceptibility can easily be evaluated. The average magnetic field from a single bead close to the sensor shows a strong dependence on the position of the bead and a change of sign when the bead passes the edge of the sensor in the direction of the applied field. Analytical approximations are derived for the average field from a homogeneous monolayer of beads for beads much smaller than the sensor dimension and for a bead size chosen to minimize the position sensitivity of the sensor response. We discuss implications for the sensor design and give general guidelines for optimum choices of sensor dimension, spacer layer thickness, and bead diameter, as well as simple expressions for the average magnetic field from the beads. The usage of the general guidelines is exemplified in the design considerations for a sensor, which is fully covered by 100 beads and has a spacer layer thickness of 100 nm. ©2008 American Institute of Physics
机译:我们提出了一个系统的理论研究,该研究是对单个和单个单层磁珠以及由平面内外部施加的均匀磁场磁化的单层磁珠在方形和矩形磁场传感器上的平均面内磁场进行研究。得出了一般的理论表达式,以便可以轻松评估传感器响应及其对传感器尺寸,间隔层厚度,磁珠直径和磁珠磁化率的依赖性。当磁珠沿外加磁场的方向通过传感器的边缘时,来自靠近传感器的单个磁珠的平均磁场强烈依赖于磁珠的位置和符号变化。对于均匀的单层珠子,对于远小于传感器尺寸的珠子,以及为使传感器响应的位置灵敏度最小化而选择的珠子大小,可以从平均单层珠子的平均场得出解析近似值。我们讨论了传感器设计的意义,并给出了传感器尺寸,间隔层厚度和磁珠直径的最佳选择的一般指导,以及磁珠平均磁场的简单表达式。传感器的设计注意事项举例说明了通用准则的用法,该传感器完全被100个磁珠覆盖,并且隔离层的厚度为100 nm。 ©2008美国物理研究所

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