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Visible photonic switch based on tunable 2D ferromagnetic photonic crystal

机译:基于可调谐2D铁磁光子晶体的可见光开关

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We proposed an idea of a photonic switch using 2D magnetic photonic crystal (Magneto-PC) structures, which is made of ferromagnetic material. The photonic switch is controlled by an external magnetic field under two magnetization conditions in the hysteresis curve: (1) the saturation magnetization (labeled as the Bs point in the hysteresis curve); and (2) non-magnetization state (labeled as the Hc point in the hysteresis curve). Our design of the 2D Magneto-PC consists of three rows of one dimensional array of ferromagnetic rods, called the "3-by-N structure". We study the variations in the transmission rate and the reflection rate at wavelength 650nm for the TE and the TM waves, respectively, under these two magnetization conditions in the ferromagnetic hysteresis curve. The simulation is carried out by the finite-difference time-domain (FDTD) method.
机译:我们提出了使用2D磁性光子晶体(磁电PC)结构的光子开关的思想,该结构由铁磁性材料制成。光子开关由滞后曲线中的两个磁化条件下的外部磁场控制:(1)饱和磁化强度(标记为滞后曲线中的BS点); (2)非磁化状态(标记为滞后曲线中的HC点)。我们的2D Magneto-PC的设计由三行一行的铁磁杆阵列组成,称为“3×N结构”。在铁磁磁滞曲线中的这两个磁化条件下,我们分别研究传输速率和波长650nm处的反射速率的变化,以及TM波。通过有限差分时域(FDTD)方法进行仿真。

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