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在三共振非线性腔中实现具有量子极限效率的差频产生。

Difference-frequency generation with quantum-limited efficiency in triply-resonant nonlinear cavities.

作者信息

Burgess Ian B, Rodriguez Alejandro W, McCutcheon Murray W, Bravo-Abad Jorge, Zhang Yinan, Johnson Steven G, Loncar Marko

机构信息

School of Engineering and Applied Sciences, Harvard University, Cambridge, MA 02138, USA.

出版信息

Opt Express. 2009 May 25;17(11):9241-51. doi: 10.1364/oe.17.009241.

Abstract

We present a comprehensive study of second-order nonlinear difference frequency generation in triply resonant cavities using a theoretical framework based on coupled-mode theory. We show that optimal "quantum-limited" conversion efficiency can be achieved at any pump power when the powers at the pump and idler frequencies satisfy a critical relationship. We demonstrate the existence of a broad parameter range in which all triply-resonant DFG processes exhibit monostable conversion. We also demonstrate the existence of a geometry-dependent bistable region.

摘要

我们使用基于耦合模理论的理论框架,对三共振腔中的二阶非线性差频产生进行了全面研究。我们表明,当泵浦频率和闲频频率的功率满足临界关系时,在任何泵浦功率下都能实现最佳的“量子极限”转换效率。我们证明了存在一个广泛的参数范围,其中所有三共振差频产生过程都表现出单稳态转换。我们还证明了存在一个与几何形状相关的双稳态区域。

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