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Optical relaxation properties of magnetic fluids under externally magnetic fields

机译:外部磁场下磁性流体的光学弛豫特性

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摘要

The relaxation behavior (including the rising and falling relaxation processes) of the transmitted light after the magnetic fluid thin films under longitudinal and transverse magnetic fields is investigated, respectively. The physical mechanisms of the two different relaxation processes are discussed. The experimental data of the rising and falling relaxation processes are fitted by using two exponential functions to achieve the rising and falling response times. The relationship between the response time and the strength of applied magnetic field, the concentration of magnetic fluid is studied experimentally. The modulation depth of the transmitted light is researched quantificationally and the deepest modulation depth is obtained with Sample 3 (with volume fraction of 5.62percent) in our experiments.
机译:研究了磁流体薄膜在纵向和横向磁场下的透射光的弛豫行为(包括上升和下降弛豫过程)。讨论了两种不同松弛过程的物理机制。通过使用两个指数函数拟合上升和下降松弛过程的实验数据,以实现上升和下降响应时间。实验研究了响应时间与外加磁场强度,磁流体浓度之间的关系。定量研究了透射光的调制深度,在我们的实验中,使用样品3(体积分数为5.62%)获得了最深的调制深度。

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