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1
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0000401554
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Photonic quantum ring
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J. C. Ahn, K. S. Kwak, B. H. Park, H. Y. Kang, J. Y. Kim, and O’Dae Kwon, “Photonic quantum ring,” Phys. Rev. Lett. 82, 536-539 (1999).
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(1999)
Phys. Rev. Lett.
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, pp. 536-539
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Ahn, J.C.1
Kwak, K.S.2
Park, B.H.3
Kang, H.Y.4
Kim, J.Y.5
Kwon, O.6
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2
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79956007768
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Chiral wave propagation manifold of the photonic quantum ring laser
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B. H. Park, J. Bae, M. J. Kim, and O’Dae Kwon, “Chiral wave propagation manifold of the photonic quantum ring laser,” Appl. Phys. Lett. 81, 580-582 (2002).
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(2002)
Appl. Phys. Lett.
, vol.81
, pp. 580-582
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Park, B.H.1
Bae, J.2
Kim, M.J.3
Kwon, O.4
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3
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57649115632
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Angle-dependent multiple-wavelength radial emissions in a toroidal microcavity: A photonic quantum ring laser
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M. Osinski, P. Blood, and A. Ishi-bashi, eds., Proc. SPIE 3283
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J. C. Ahn, H. Y. Kang, and O’Dae Kwon, “Angle-dependent multiple-wavelength radial emissions in a toroidal microcavity: a photonic quantum ring laser,” in Physics and Simulation of Optoelectronic Devices VI, M. Osinski, P. Blood, and A. Ishi-bashi, eds., Proc. SPIE 3283, 241-251 (1998).
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(1998)
Physics and Simulation of Optoelectronic Devices VI
, pp. 241-251
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Ahn, J.C.1
Kang, H.Y.2
Kwon, O.3
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4
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0035535268
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Fabrication of photonic quantum ring laser using chemically assisted ion beam etching
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J. Y. Kim, K. S. Kwak, J. S. Kim, B. Kang, and O’Dae Kwon, “Fabrication of photonic quantum ring laser using chemically assisted ion beam etching,” J. Vac. Sci. Technol. B 19, 1334-1338 (2001).
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(2001)
J. Vac. Sci. Technol. B
, vol.19
, pp. 1334-1338
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Kim, J.Y.1
Kwak, K.S.2
Kim, J.S.3
Kang, B.4
Kwon, O.5
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5
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85010094197
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Spectrum of three-dimensional photonic quantum ring microdisk cavities: Comparison between theory and experiment
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(to be published)
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J. Bae, J. Lee, O’Dae Kwon, and V. G. Minogin, “Spectrum of three-dimensional photonic quantum ring microdisk cavities: comparison between theory and experiment,” Opt. Lett. (to be published).
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Opt. Lett.
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Bae, J.1
Lee, J.2
Kwon, O.3
Minogin, V.G.4
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6
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85010094195
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Although a 3-D ray optics view, based on a knot theory, was tentatively adopted in Ref. 2, a detailed analysis based on a 3-D Bragg diffraction law is reported in Ref. 5
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Although a 3-D ray optics view, based on a knot theory, was tentatively adopted in Ref. 2, a detailed analysis based on a 3-D Bragg diffraction law is reported in Ref. 5.
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7
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0026912464
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Giant enhancement of luminescence intensity in Er-doped Si/SiO2 resonant cavities
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2resonant cavities,” Appl. Phys. Lett. 61,1381-1383 (1992).
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(1992)
Appl. Phys. Lett.
, vol.61
, pp. 1381-1383
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Schubert, E.F.1
Vredenberg, A.M.2
Hunt, N.E.J.3
Wong, Y.H.4
Becker, P.C.5
Poate, J.M.6
Jacobson, D.C.7
Feldman, L.C.8
Zydzik, G.J.9
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8
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0036612370
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Optical sensing by using photonic quantum ring lasers and resonance enhanced photodetectors
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B. H. Park, S. D. Baek, J. Y. Kim, J. Bae, H. Han, and O’Dae Kwon, “Optical sensing by using photonic quantum ring lasers and resonance enhanced photodetectors,” Opt. Eng. 41, 1339-1345 (2002).
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(2002)
Opt. Eng.
, vol.41
, pp. 1339-1345
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Park, B.H.1
Baek, S.D.2
Kim, J.Y.3
Bae, J.4
Han, H.5
Kwon, O.6
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