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Theoretical Analysis and Experimental Measurement of Birefringence Properties in Magnetic Fluid Subjected to Magnetic Field

机译:磁场作用下磁流体双折射特性的理论分析与实验测量

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In this paper, the birefringence properties of the magnetic fluid exposed to magnetic field at 300 K were studied by simulation and experimental measurement. In addition, the arrangement of magnetic particles in the magnetic fluid was simulated using Monte Carlo method, and was verified by the experiment. It was concluded that the change of birefringence is influenced by the anisotropy of the magnetic fluid microstructure in the magnetic field. In addition, the sensitivities of the birefringence in simulation and measurement were /Gs and /Gs, respectively, when the magnetic field intensity was in the insensitive interval of 0–300 Gs. In summary, the birefringence of magnetic fluid would increase with the increasing magnetic field intensity, and vice versa. This research on the birefringence characteristics of magnetic fluid could be used in the optical sensing technology.
机译:通过模拟和实验测量,研究了在300 K磁场作用下的磁流体的双折射特性。另外,利用蒙特卡洛方法模拟了磁流体在磁流体中的排列,并通过实验进行了验证。可以得出结论,双折射的变化受磁场中磁性流体微观结构的各向异性的影响。此外,当磁场强度处于0-300 Gs的不敏感区间时,在模拟和测量中双折射的灵敏度分别为/ Gs和/ Gs。总之,磁性流体的双折射将随着磁场强度的增加而增加,反之亦然。对磁性流体双折射特性的研究可用于光学传感技术。

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