Lasing in metallic-coated nanocavities
暂无分享,去创建一个
M. Smit | E. J. Geluk | B. Smalbrugge | R. Nötzel | Yong-hee Lee | T. D. Vries | Y. Oei | MT Martin Hill | Youcai Zhu | P. Veldhoven | F. Otten | Tj Tom Eijkemans | Jaros lstrok | A. Turkiewicz | H. Waardt | Soon-Hong Kwon | Yong-Hee Lee
[1] Dirk Englund,et al. Ultrafast photonic crystal nanocavity laser , 2006 .
[2] Kengo Nozaki,et al. Laser characteristics with ultimate-small modal volume in photonic crystal slab point-shift nanolasers , 2006 .
[3] T. Baba,et al. Modal characteristics and bistability in twin microdisk photonic molecule lasers , 2006, IEEE Journal of Selected Topics in Quantum Electronics.
[4] G. Annino,et al. Properties of trapped electromagnetic modes in coupled waveguides , 2005, physics/0509013.
[5] J. Scheuer,et al. Lasing from a circular Bragg nanocavity with an ultrasmall modal volume , 2005, physics/0505094.
[6] J. H. den Besten,et al. Integrated two-state AWG-based multiwavelength laser , 2005, IEEE Photonics Technology Letters.
[7] D. Englund,et al. Controlling the spontaneous emission rate of single quantum dots in a two-dimensional photonic crystal. , 2005, Physical review letters.
[8] M. Smit,et al. A fast low-power optical memory based on coupled micro-ring lasers , 2004, Nature.
[9] Soon-Hong Kwon,et al. Electrically Driven Single-Cell Photonic Crystal Laser , 2004, Science.
[10] Jean-Michel Gérard,et al. Strong Purcell effect for InAs quantum boxes in three-dimensional solid-state microcavities , 1999 .
[11] Kim,et al. Two-dimensional photonic band-Gap defect mode laser , 1999, Science.
[12] Masayuki Fujita,et al. Ultrasmall and ultralow threshold GaInAsP-InP microdisk injection lasers: design, fabrication, lasing characteristics, and spontaneous emission factor , 1999 .
[13] Y. Rahmat-Samii,et al. Smallest possible electromagnetic mode volume in a dielectric cavity : Photonic crystals and microstructures , 1998 .
[14] J. Judkins,et al. Finite-difference time-domain modeling of nonperfectly conducting metallic thin-film gratings , 1995 .
[15] Allen Taflove,et al. Computational Electrodynamics the Finite-Difference Time-Domain Method , 1995 .
[16] Umar Mohideen,et al. Threshold characteristics of semiconductor microdisk lasers , 1993 .
[17] N. Dutta,et al. Semiconductor Lasers , 1993 .
[18] Shun Lien Chuang,et al. Amplified spontaneous emission and carrier pinning in laser diodes , 1993 .
[19] Eli Yablonovitch,et al. Nearly ideal InP/In0.53Ga0.47As heterojunction regrowth on chemically prepared In0.53Ga0.47As surfaces , 1992 .
[20] A. F. J. Levi,et al. Whispering-gallery mode microdisk lasers , 1992 .
[21] A. Karlsson,et al. On the linewidth of microcavity lasers , 1992 .
[22] A. Forchel,et al. Transport and optical properties of semiconductor quantum wires , 1991 .
[23] M. Asada,et al. Gain and the threshold of three-dimensional quantum-box lasers , 1986 .
[24] E. Zielinski,et al. Excitonic transitions and exciton damping processes in InGaAs/InP , 1986 .
[25] R. W. Christy,et al. Optical Constants of the Noble Metals , 1972 .
[26] Marie-Luce Thèye,et al. Investigation of the Optical Properties of Au by Means of Thin Semitransparent Films , 1970 .
[27] M. Stowell,et al. Handbook of Chemistry and Physics 50th Edn , 1970 .
[28] A. Milnes. Elementary solid state physics: C. Kittel: Wiley, New York, 1962. 339 pp., $8.75. , 1963 .
[29] Stefan A. Maier,et al. Effective Mode Volume of Nanoscale Plasmon Cavities , 2006 .
[30] B. Prade,et al. Guided optical waves in fibers with negative dielectric constant , 1994 .
[31] D. Lide. Handbook of Chemistry and Physics , 1992 .