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纳米纤维光学界面的极化响应与手性标度律

Polarization response and scaling law of chirality for a nanofibre optical interface.

作者信息

Sadgrove Mark, Sugawara Masakazu, Mitsumori Yasuyoshi, Edamatsu Keiichi

机构信息

Research Institute of Electrical Communication, Tohoku University, Sendai, 980-8577, Japan.

出版信息

Sci Rep. 2017 Dec 6;7(1):17085. doi: 10.1038/s41598-017-17133-3.

Abstract

Two port optical devices couple light to either port dependent on the input photon state. An important class of two-port devices is that of evanescently-coupled interfaces where chirality of photon coupling can lead to important technological applications. Here, we perform a fundamental characterization of such an interface, reconstructing the two-port polarization response over the surface of the Poincaré sphere for an optical nanofibre. From this result, we derive a chirality measure which is universal, obeying a one parameter scaling law independent of the exact parameters of the nanofibre and wavelength of light. Additionally, we note that the polarization response differs qualitatively for single and multiple coupled emitters, with possible implications for sensing and the characterization of waveguide coupled spins.

摘要

双端口光学器件根据输入光子状态将光耦合到任意一个端口。一类重要的双端口器件是倏逝耦合界面,其中光子耦合的手性可导致重要的技术应用。在此,我们对这样一个界面进行了基本表征,重建了光学纳米纤维在庞加莱球表面上的双端口偏振响应。基于此结果,我们推导出一种通用的手性度量,它遵循一个与纳米纤维的确切参数和光波长无关的单参数缩放定律。此外,我们注意到单耦合发射器和多耦合发射器的偏振响应在性质上有所不同,这可能对传感以及波导耦合自旋的表征有影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4e0b/5719059/9a55d8989db2/41598_2017_17133_Fig1_HTML.jpg

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