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Magnetic pulse generation for high-speed magneto-optic switching

机译:高速磁光切换的磁脉冲产生

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In this article, the magnetic pulse characteristics needed to achieve high-speed magneto-optic (MO) switching are investigated. A fiber-based, MO, low-voltage optical switch capable of 200 ns switching is presented, along with the special circuit characteristics for magnetic field generation for high-speed switching. The switch consists of the optical system, the MO material (bismuth substituted iron garnet [(Bi_(1.1)Tb_(1.9))(Fe_(4.25)Ga_(0.75))O_(12)]), and a high-speed magnetic field driving circuit. A Faraday rotator is placed within the interferometric loop of a fiber-optic Sagnac interferometer, and interference at the output ports is controlled by the applied field. The fast switching speed is accomplished via the special design of the magnetic pulse generation circuitry. The applied magnetic field overshoots the field necessary to achieve the desired Faraday rotation and then settles to a steady state field. If the duration of the overshoot is less than the time it takes the material to saturate, a fast optical switching time can be achieved without saturating the material. The effects of the overshoot amplitude and duration and steady-state amplitude on optical rise time (determined by domain wall velocity) are studied and experimental results are presented.
机译:在本文中,研究了实现高速磁光(Mo)切换所需的磁脉冲特性。提供了一种基于光纤的MO,低压光学开关,其能够为200ns切换,以及用于高速切换的磁场产生的特殊电路特性。该开关由光学系统,MO材料(铋取代的铁石榴石[(Bi_(1.1)TB_(1.9))(FE_(4.25)Ga_(0.75))O_(12)]),以及高速磁场驱动电路。将法拉第旋转器放置在光纤锯齿干涉仪的干涉回路内,并且输出端口处的干扰由所施加的场控制。通过磁脉冲发生电路的特殊设计完成快速切换速度。所施加的磁场过冲了实现所需的法拉第旋转所需的领域,然后将其居中到稳态场。如果过冲的持续时间小于材料饱和所需的时间,则可以在不饱和材料的情况下实现快速的光学切换时间。研究了过冲幅度和持续时间和稳态振幅对光上升时间(通过畴壁速度确定)的影响,并提出了实验结果。

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