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482 OPTICS LETTERS / Vol. 34, No. 4 / February 15, 2009 On-chip green silica upconversion microlaser Tao Lu,1 Lan Yang,1,3 Rob V. A. van Loon,2 Albert Polman,2 and Kerry J. Vahala1,*
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Document Date: 2009-05-11 16:28:30


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Country

Canada / /

Currency

USD / /

/

Facility

Matter Institute / Washington University / California Institute of Technology / /

IndustryTerm

high-phonon energy host / lowphonon energy hosts / silicon chip / high phonon energy / silicon-based optoelectronic technology / resonator device / /

Organization

Caltech Lee Center / Matter Institute for Atomic and Molecular Physics / California Institute of Technology / Defense Advanced Research Projects Agency / Optical Society of America / Foundation for Fundamental Research / Optical Society of America OCIS / Washington University in St. Louis / St. Louis / Applied Physics Department / Air Force / Force of Scientific Research / Center for Nanophotonics / Natural Sciences and Engineering Research Council of Canada / Department of Electrical and System Engineering / Dutch Ministry of Economic Affairs / /

Person

J. A. de Dood / A. Polman / L. Yang / B. Min / A. van Blaaderen / E. Snoeks / P. C. Sercel / L. H. Slooff / B. Lev / Nat / K. J. Vahala / T. Carmon / P. G. Kik / T. J. Kippenberg / Tao Lu / D. K. Armani / J. Kalkman / F. Lissillour / V / H. Mabuchi / A. Moroz / S. M. Spillane / /

Position

*Corresponding author / O. Painter / /

PublishedMedium

OPTICS LETTERS / /

Technology

laser / lasers / 2009 On-chip / silicon chip / same Si chip / silicon-based optoelectronic technology / Microwave / optical fiber / same chip / /

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