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Ideality in a fiber-taper-coupled microresonator system for application to cavity quantum electrodynamics

机译:光纤锥耦合微谐振器系统中用于腔量子电动力学的理想选择

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摘要

The ability to achieve near lossless coupling between a waveguide and a resonator is fundamental to many quantum-optical studies as well as to practical applications of such structures. The nature of loss at the junction is described by a figure of merit called ideality. It is shown here that under appropriate conditions ideality in excess of 99.97% is possible using fiber-taper coupling to high-Q silica microspheres. To verify this level of coupling, a technique is introduced that can both measure ideality over a range of coupling strengths and provide a practical diagnostic of parasitic coupling within the fiber-taper-waveguide junction.
机译:在波导和谐振器之间实现近乎无损耦合的能力是许多量子光学研究以及此类结构的实际应用的基础。交界处损耗的性质由称为理想性的品质因数描述。此处表明,在适当的条件下,使用与高Q二氧化硅微球偶联的纤维锥度,可以实现超过99.97%的理想化。为了验证这种耦合水平,引入了一种既可以在一定范围的耦合强度上测量理想度,又可以对光纤-锥-波导结内的寄生耦合进行实际诊断的技术。

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