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Ultrahigh-Q Nanocavities in Two-Dimensional Photonic Crystal Slabs

机译:二维光子晶体平板中的超高Q纳米腔

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摘要

In this paper, we discuss methods to suppress the radiation loss of ultrasmall cavities, of the size of the optical wavelength, in two-dimensional photonic crystal slabs. An important design concept to suppress radiation loss is introduced: The envelope of the cavity mode field should have no abrupt changes and should ideally follow a Gaussian function. Cubic wavelength order cavities, with experimental Q factors of 100 000 and nearly 1 000 000 are obtained by tailoring the envelope functions using air-hole shifts and multistep heterostructures, respectively. In addition, the experimental Q factors of the latest cavities are shown to be determined by the imperfections in the fabricated structures and not by the cavity design. The differences between the experimental and the theoretical Q factors are investigated in order to demonstrate how higher Q factors could be realized in the future
机译:在本文中,我们讨论了在二维光子晶体平板中抑制超小腔体(其光波长大小)的辐射损耗的方法。引入了抑制辐射损失的重要设计概念:腔模场的包络应无突变,理想情况下应遵循高斯函数。通过分别使用气孔位移和多步异质结构调整包络函数,获得了实验Q因子分别为100 000和接近1 000 000的立方波长阶腔。此外,最新型腔的实验Q因子显示是由制造结构中的缺陷决定的,而不是由型腔设计决定的。研究了实验和理论Q因子之间的差异,以证明将来如何实现更高的Q因子

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