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|a Burgess, Ian B.
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|a Massachusetts Institute of Technology. Department of Mathematics
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|a Massachusetts Institute of Technology. Department of Physics
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|a Rodriguez, Alejandro W.
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|a Bravo-Abad, Jorge
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|a Johnson, Steven G.
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|a Zhang, Yinan
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|a McCutcheon, Murray W.
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|a Rodriguez, Alejandro W.
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|a Bravo-Abad, Jorge
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|a Johnson, Steven G.
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|a Loncar, Marko
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|a Design of an efficient terahertz source using triply resonant nonlinear photonic crystal cavities
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|b Optical Society of America,
|c 2013-08-27T17:12:44Z.
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|z Get fulltext
|u http://hdl.handle.net/1721.1/80307
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|a We propose a scheme for efficient cavity-enhanced nonlinear THz generation via difference-frequency generation (DFG) processes using a triply resonant system based on photonic crystal cavities. We show that high nonlinear overlap can be achieved by coupling a THz cavity to a doubly-resonant, dual-polarization near-infrared (e.g. telecom band) photonic-crystal nanobeam cavity, allowing the mixing of three mutually orthogonal fundamental cavity modes through a χ[super script (2)] nonlinearity. We demonstrate through coupled-mode theory that complete depletion of the pump frequency - i.e., quantum-limited conversion - is possible. We show that the output power at the point of optimal total conversion efficiency is adjustable by varying the mode quality (Q) factors.
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|a Harvard University. Nanoscale Science and Engineering Center
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|a Massachusetts Institute of Technology. Institute for Soldier Nanotechnologies (Contract W911NF-07-D-0004)
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|a United States. Dept. of Energy (Grant DE-FG02-97ER25308)
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|a en_US
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|a Article
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|t Optics Express
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