arXiv · 0903.3928
Difference-frequency generation with quantum-limited efficiency in triply-resonant nonlinear cavities
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.
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Ian B. Burgess, Alejandro W. Rodriguez, Murray W. McCutcheon, Jorge Bravo-Abad, Yinan Zhang, Steven G. Johnson, Marko Loncar. 2009-03-23. Difference-frequency generation with quantum-limited efficiency in triply-resonant nonlinear cavities. https://doi.org/10.1364/oe.17.009241
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