InP-based two-dimensional photonic crystal on silicon: In-plane Bloch mode laser
暂无分享,去创建一个
E. Jalaguier | Xavier Letartre | Christelle Monat | Pierre Viktorovitch | David Cassagne | Pedro Rojo-Romeo | S. Pocas | C. Seassal | B. Aspar | P. Regreny | J. P. Albert | C. Monat | X. Letartre | P. Viktorovitch | C. Seassal | B. Aspar | P. Regreny | J. Albert | E. Jalaguier | D. Cassagne | P. Rojo-Romeo | S. Pocas | M. Le Vassor d'Yerville | M. D’yerville
[1] Dong Hoon Jang,et al. Room-temperature triangular-lattice two-dimensional photonic band gap lasers operating at 1.54 μm , 2000 .
[2] Xavier Letartre,et al. Triangular and hexagonal high Q-factor 2-D photonic bandgap cavities on III-V suspended membranes , 1999 .
[3] Kim,et al. Two-dimensional photonic band-Gap defect mode laser , 1999, Science.
[4] S. Noda,et al. Polarization Mode Control of Two-Dimensional Photonic Crystal Laser by Unit Cell Structure Design , 2001, Science.
[5] John D. Joannopoulos,et al. Laser action from two-dimensional distributed feedback in photonic crystals , 1999 .
[6] Bernard Aspar,et al. InP microdisk lasers on silicon wafer: CW room temperature operation at 1.6 [micro sign]m , 2001 .
[7] Masaya Notomi,et al. Directional lasing oscillation of two-dimensional organic photonic crystal lasers at several photonic band gaps , 2001 .
[8] Soon-Hong Kwon,et al. Very-low-threshold photonic band-edge lasers from free-standing triangular photonic crystal slabs , 2002 .
[9] Philippe Regreny,et al. InP 2D photonic crystal microlasers on silicon wafer: room temperature operation at 1.55 [micro sign]m , 2001 .