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Electromagnetic radiation / Wave mechanics / Optical devices / Optical fiber / Waveguide / Laser diode / Transverse mode / Silicon photonics / Laser / Optics / Physics / Photonics


Highly efficient coupling from an optical fiber to a nanoscale silicon optomechanical cavity Simon Gr¨oblacher,1, 2, ∗ Jeff T. Hill,1, 2, ∗ Amir H. Safavi-Naeini,1, 2, ∗ Jasper Chan,1 and Oskar Painter1, 2, 3, †
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Document Date: 2013-09-22 06:39:01


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File Size: 1,06 MB

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City

Pasadena / /

Company

Corning / /

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Facility

Laboratory of Applied Physics / California Institute of Technology / Max Planck Institute / /

IndustryTerm

energy levels / photonic chip / waveguide systems / in-plane device / nano-optics devices / nano-scale on-chip optical devices / molecular energy level crossings / mature technology / energy / /

MarketIndex

ta / /

Movie

D. V / /

Organization

Betty Moore Foundation / California Institute of Technology / NSF Physics Frontiers Center / Max Planck Institute for the Science of Light / Laboratory of Applied Physics / Institute for Quantum Information and Matter / /

Person

I. Bulu / Amir H. Safavi-Naeini / Jeff T. Hill / Nature / R. Baets / V / Simon Gr / Bell Syst / G. Z. Masanovic / V / /

Position

fiber polarization controller / O. Painter / /

ProvinceOrState

California / /

Technology

semiconductor / radiation / laser / broadband / SOI chip / photonic chip / spectroscopy / microwave / Simulation / optical fiber / using a tapered optical fiber / /

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