Theoretical Study of a Planar Structure Plasmonic Nanolaser in Visible Regime
Author:
Publisher
Springer Science and Business Media LLC
Subject
Biochemistry,Biophysics,Biotechnology
Link
http://link.springer.com/content/pdf/10.1007/s11468-014-9702-7.pdf
Reference35 articles.
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3. Ning CZ (2010) Semiconductor nanolasers. Phys Status Solidi B 247:774–788
4. McKendry JJD, Green RP, Kelly AE, Gong Z, Guilhabert B, Massoubre D, Gu E, Dawson MD (2010) High-speed visible light communications using individual pixels in a micro light-emitting diode array. IEEE Photon Technol Lett 22:1346–1348
5. Okamoto K, Kawakami Y (2009) High-efficiency InGaN/GaN light emitters based on nanophotonics and plasmonics. IEEE J Sel Top Quant Electron 15:1199–1208
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1. Nanolasers Based on 2D Materials;Laser & Photonics Reviews;2020-11-12
2. Quadrupole Plasmon Lasers with a Super Low Threshold Based on an Active Three-Layer Nanoshell Structure;Plasmonics;2015-08-07
3. Theoretical Investigation of Loss-Compensating Hybrid Waveguide Using Quasi-One-Dimensional Surface Plasmon for Green Nanolaser;Plasmonics;2015-08-04
4. The design criteria of hybrid waveguides using semiconductor gain to compensate the metal loss towards nano-scale lasers with high plasmonicity;Applied Physics Letters;2014-07-21
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