Effect of p-contact metallization on the performance of gain-coupled DFBs with oxide-defined surface gratings
暂无分享,去创建一个
[1] H. Kogelnik,et al. Coupled‐Wave Theory of Distributed Feedback Lasers , 1972 .
[2] R. C. Weast. CRC Handbook of Chemistry and Physics , 1973 .
[3] James J. Coleman,et al. Metallization to asymmetric cladding separate confinement heterostructure lasers , 1995 .
[4] J. Coleman,et al. An asymmetric cladding gain-coupled DFB laser with oxide defined metal surface grating by MOCVD , 1997, Conference Proceedings. LEOS '97. 10th Annual Meeting IEEE Lasers and Electro-Optics Society 1997 Annual Meeting.
[5] H.-L. Cao,et al. Gain-coupled distributed feedback semiconductor lasers with an absorptive conduction-type inverted grating , 1992, IEEE Photonics Technology Letters.
[6] G. Papen,et al. Very narrow linewidth asymmetric cladding InGaAs-GaAs ridge waveguide distributed Bragg reflector lasers , 1996, IEEE Photonics Technology Letters.
[7] R. C. Tiberio,et al. CW performance of an InGaAs-GaAs-AlGaAs laterally-coupled distributed feedback (LC-DFB) ridge laser diode , 1995 .
[8] Dalma Novak,et al. Performance comparison of gain-coupled and index-coupled DFB semiconductor lasers , 1994 .