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A comparison between experiment and theory on few-quantum-dot nanolasing in a photonic-crystal cavity J. Liu,1,2,3 S. Ates,1,4 M. Lorke,1,5 J. Mørk,1 P. Lodahl,2,6 and S. Stobbe2,∗ 1 DTU
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Document Date: 2015-07-17 10:31:59


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City

Copenhagen / Guangzhou / Lyngby / /

Company

Bayer / Quantum / A. Badolato L. C. / /

Country

Germany / Turkey / China / Denmark / /

Currency

USD / /

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Facility

National Research Institute of Electronics / Technical University of Denmark / University of Bremen / Niels Bohr Institute / University of Copenhagen / South China Normal University / /

IndustryTerm

carrier dynamics / on-chip optical signal processing / carrier scattering / carrier-photon / silicon chip / dot devices / carrier-trapping dynamics / contemporary technology / microcavity systems / nanolaser devices / /

Movie

D. V / /

OperatingSystem

L3 / /

Organization

Carlsberg Foundation / Danish Council for Independent Research / Council of Turkey / Technical University of Denmark / Bremen Center for Computational Materials Science / Villum Foundation / Optical Society of America OCIS / South China Normal University / University of Bremen / National Research Institute of Electronics and Cryptology / European Research Council / South China Academy of Advanced Optoelectronics / University of Copenhagen / Department of Photonics Engineering / Niels Bohr Institute / /

Person

J. Finley / V / E. H. Lee / Nat / G. Tarel / V / /

Position

semiconductor model for QD-based microcavity lasers / /

PublishedMedium

OPTICS EXPRESS / /

Region

South China / /

Technology

semiconductor / quantum dots / Laser / broadband / lasers / hybridization / silicon chip / Optoelectronics / spectroscopy / Integrated Circuits / /

URL

http /