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Annular Bragg resonators - the ultimate device for sensing, nonlinear optics and cavity quantum electrodynamics

机译:环形布拉格谐振器-传感,非线性光学和腔量子电动力学的终极设备

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摘要

Circular resonators are key elements, essential for research involving highly confined fields and strong photon-atom interactions such as cavity QED, as well as for practical applications in optical communication systems, biochemical sensing and more. The main characteristics of such resonators are the Q-factor, the free spectral range (FSR) and the modal volume, where the last two are primarily determined by the resonator radius. The Total-Internal-Reflection (TIR) mechanism employed in "conventional" resonators couples between these characteristics and limits the ability to realize compact devices exhibiting large FSR, small modal volume and high Q. Recently, a new class of annular resonator, based on a single defect surrounded by radial Bragg reflectors, has been proposed and analyzed. The radial Bragg confinement decouples the modal volume and the Q and paves a new way for the realization of compact and low loss resonators. Such properties as well as the unique mode profile of the annular Bragg resonators (ABRs) make this class of devices an excellent tool for ultra-sensitive biochemical detection as well as for studies in nonlinear optics.
机译:圆形谐振器是关键元素,对于涉及高度受限领域和强光子-原子相互作用(例如腔QED)的研究以及光通信系统,生化传感等领域的实际应用至关重要。这种谐振器的主要特性是Q因子,自由光谱范围(FSR)和模量,其中最后两个主要由谐振器半径确定。在“常规”谐振器中采用的全内反射(TIR)机制在这些特性之间耦合,并限制了实现具有大FSR,小模量和高Q的紧凑型器件的能力。最近,一种新型的环形谐振器基于已经提出并分析了由径向布拉格反射器包围的单个缺陷。径向布拉格约束将模量和Q解耦,为实现紧凑和低损耗谐振器铺平了新途径。此类特性以及环形布拉格谐振器(ABR)的独特模式轮廓,使得此类设备成为超灵敏生物化学检测以及非线性光学研究的出色工具。

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