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Field modulation of light transmission through ferrofluid film

机译:穿过铁磁薄膜的光的场调制

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The intensity of light transmitted through a thin ferrofluid film could be modulated by an applied magnetic field. After the magnet was switched on, the light transmission coefficient decreased first to a minimum value, then raised up to a stable level, forming a valley in the time section. The stronger the applied magnetic field is, or the higher the particle volume fraction is, the lower the valley value of light transmission coefficient. After the magnetic field was switched off, the final stable value of light transmission coefficient was affected by the remanence of magnet. The relaxation process of light transmission through the ferrofluid film could be repeated by continuously switching on and off the magnet, but the highest transmission values and the lowest transmission values can be stable without drift only after many cycles. The behavior of light transmission coefficient should be related with the particle chains' forming, lengthening, moving, and breaking in the ferrofluid film.
机译:可以通过施加的磁场来调制穿过铁磁流体薄膜的光的强度。接通磁体后,透光系数首先减小到最小值,然后上升到稳定水平,在该时间段中形成一个谷值。施加的磁场越强,或者粒子体积分数越高,透光系数的谷值越低。关闭磁场后,透光系数的最终稳定值会受到磁铁剩磁的影响。可以通过连续打开和关闭磁体来重复穿过铁磁流体膜的光透射的松弛过程,但是只有在多次循环之后,最高的透射率值和最低的透射率值才能稳定而不会发生漂移。透光系数的行为应与铁磁流体薄膜中颗粒链的形成,延长,移动和断裂有关。

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