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Simultaneous inhibition and redistribution of spontaneous light emission in photonic crystals

机译:光子晶体中自发发光的同时抑制和重新分布

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Inhibiting spontaneous light emission and redistributing the energy into useful forms are desirable objectives for advances in various fields, including photonics, illuminations, displays, solar cells, and even quantum-information systems. We demonstrate both the "inhibition" and "redistribution" of spontaneous light emission by using two-dimensional (2D) photonic crystals, in which the refractive index is changed two-dimensionally. The overall spontaneous emission rate is found to be reduced by a factor of 5 as a result of the 2D photonic bandgap effect. Simultaneously, the light energy is redistributed from the 2D plane to the direction normal to the photonic crystal.
机译:对于包括光子学,照明,显示器,太阳能电池,甚至量子信息系统在内的各个领域,抑制自发发光并将能量重新分配为有用形式是其理想的目标。我们通过使用二维(2D)光子晶体来演示自发性光发射的“抑制”和“再分布”,其中二维地改变折射率。由于二维光子带隙效应,整体自发发射速率降低了5倍。同时,光能从2D平面重新分布到垂直于光子晶体的方向。

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