Polarized vertical beaming of an engineered hexapole mode laser

被引:14
作者
Kang, Ju-Hyung [1 ]
Seo, Min-Kyo [1 ]
Kim, Sun-Kyung [2 ]
Kim, Se-Heon [1 ]
Kim, Myung-Ki [1 ]
Park, Hong-Gyu
Kim, Ki-Soo [3 ]
Lee, Yong-Hee [1 ,4 ,5 ]
机构
[1] Korea Adv Inst Sci & Technol, Dept Phys, Taejon 305701, South Korea
[2] LG Innotek, LED Div, Adv Technol Lab, Seoul 137724, South Korea
[3] Elect & Telecommun Res Inst, Convergence & Components & Mat Res Lab, Taejon 305700, South Korea
[4] Korea Adv Inst Sci & Technol, Dept Phys, Taejon 305701, South Korea
[5] Korea Adv Inst Sci & Technol, Dept Nanosci & Technol WCU, Taejon 305701, South Korea
关键词
SPONTANEOUS EMISSION; SINGLE-DEFECT; NANOCAVITY;
D O I
10.1364/OE.17.006074
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
We demonstrate vertical beaming of linearly-polarized light from the hexapole mode of an engineered single-cell photonic crystal cavity by employing the solid angle scanning system. The vertical emission that is forbidden by the inner symmetry of the hexapole mode is made possible by perturbing its symmetry. Experimentally 56% of photons are funneled within a divergence angle of +/- 30 degrees. Measured polarization-resolved far-field profiles of the engineered hexapole mode agree well with those of the predictions of finite difference time domain methods. (C) 2009 Optical Society of America
引用
收藏
页码:6074 / 6081
页数:8
相关论文
共 27 条
[1]   Fine-tuned high-Q photonic-crystal nanocavity [J].
Akahane, Y ;
Asano, T ;
Song, BS ;
Noda, S .
OPTICS EXPRESS, 2005, 13 (04) :1202-1214
[2]   Ultrafast photonic crystal nanocavity laser [J].
Altug, Hatice ;
Englund, Dirk ;
Vuckovic, Jelena .
NATURE PHYSICS, 2006, 2 (07) :484-488
[3]  
[Anonymous], 1995, Computational Electrodynamics: The Finite-Difference TimeDomain Method
[4]   Observation of fast spontaneous emission decay in GaInAsP photonic crystal point defect nanocavity at room temperature [J].
Baba, T ;
Sano, D ;
Nozaki, K ;
Inoshita, K ;
Kuroki, Y ;
Koyama, F .
APPLIED PHYSICS LETTERS, 2004, 85 (18) :3989-3991
[5]   Deterministic coupling of single quantum dots to single nanocavity modes [J].
Badolato, A ;
Hennessy, K ;
Atatüre, M ;
Dreiser, J ;
Hu, E ;
Petroff, PM ;
Imamoglu, A .
SCIENCE, 2005, 308 (5725) :1158-1161
[6]   General recipe for designing photonic crystal cavities [J].
Englund, D ;
Fushman, I ;
Vuckovic, J .
OPTICS EXPRESS, 2005, 13 (16) :5961-5975
[7]   Controlling the spontaneous emission rate of single quantum dots in a two-dimensional photonic crystal [J].
Englund, D ;
Fattal, D ;
Waks, E ;
Solomon, G ;
Zhang, B ;
Nakaoka, T ;
Arakawa, Y ;
Yamamoto, Y ;
Vuckovic, J .
PHYSICAL REVIEW LETTERS, 2005, 95 (01)
[8]   Nanowire coupling to photonic crystal nanocavities for single photon sources [J].
Grillet, Christian ;
Monat, Christelle ;
Smith, Cameron L. C. ;
Eggleton, Benjamin J. ;
Moss, David J. ;
Frederick, Simon ;
Dalacu, Dan ;
Poole, Philip J. ;
Lapointe, Jean ;
Aers, Geof ;
Williams, Robin L. .
OPTICS EXPRESS, 2007, 15 (03) :1267-1276
[9]   Optofluidic integration of a photonic crystal nanolaser [J].
Kim, Se-Heon ;
Choi, Jae-Hoon ;
Lee, Seung-Kon ;
Kim, Shin-Hyun ;
Yang, Seung-Man ;
Lee, Yong-Hee ;
Seassal, Christian ;
Regrency, Philippe ;
Viktorovitch, Pierre .
OPTICS EXPRESS, 2008, 16 (09) :6515-6527
[10]   Effects of a bottom substrate on emission properties of a photonic crystal nanolaser [J].
Kim, Se-Heon ;
Seo, Min-Kyo ;
Kim, Ju-Young ;
Lee, Yong-Hee .
2007 INTERNATIONAL CONFERENCE ON INDIUM PHOSPHIDE AND RELATED MATERIALS, CONFERENCE PROCEEDINGS, 2007, :480-483