Power dissipation in oxide-confined 980-nm vertical-cavity surface-emitting lasers
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Guangdi Shen | Baolu Guan | Qiang Wang | B. Guan | Shuo Li | G. Shen | Guo-Zhu Shi | Shuo Li | Qiang Wang | G. Shi
[1] S. Kang,et al. A simple rate-equation-based thermal VCSEL model , 1999 .
[2] C. S. Wang,et al. High-efficiency, high-speed VCSELs with 35 Gbit=s error-free operation , 2007 .
[3] A. N. Al-Omari,et al. Polyimide-planarized vertical-cavity surface-emitting lasers with 17.0-GHz bandwidth , 2004, IEEE Photonics Technology Letters.
[4] C. Chang-Hasnain,et al. Effect of operating electric power on the dynamic behavior of quantum well vertical‐cavity surface‐emitting lasers , 1991 .
[5] Luo Bin,et al. Theoretical study on phase conjugation in weakly injected vertical-cavity surface-emitting lasers , 2008 .
[6] J. Puls,et al. Optical gain and lasing of ZnO/ZnMgO multiple quantum wells : From low to room temperature , 2006 .
[7] Henry,et al. Femtosecond carrier thermalization in dense Fermi seas. , 1988, Physical review letters.
[8] Henryk Temkin,et al. Vertical-cavity surface-emitting lasers : design, fabrication, characterization, and applications , 2001 .
[9] Johan S. Gustavsson,et al. High-Speed, Low-Current-Density 850 nm VCSELs , 2009 .
[10] Benjamin Kögel,et al. Assessment of VCSEL thermal rollover mechanisms from measurements and empirical modeling. , 2011, Optics express.
[11] H. Summers,et al. Analytical modelling of end thermal coupling in a solid-state laser longitudinally bonded by a vertical-cavity top-emitting laser diode , 2009 .
[12] 李硕,et al. A low-threshold and high-power oxide-confined 850-nm AlInGaAs strained quantum-well vertical-cavity surface-emitting laser , 2011 .
[13] Chris McIntosh,et al. VCSEL end-pumped passively Q-switched Nd:YAG laser with adjustable pulse energy. , 2011, Optics express.
[14] W. Fan,et al. Low threshold current density, low resistance oxide-confined VCSEL fabricated by a dielectric-free approach , 2010 .
[15] Alex Mutig,et al. Highly temperature-stable modulation characteristics of multioxide-aperture high-speed 980 nm vertical cavity surface emitting lasers , 2010 .
[16] Clint Schow,et al. Get On The Optical Bus , 2010, IEEE Spectrum.
[17] Liu An-jin,et al. Graded index profiles and loss-induced single-mode characteristics in vertical-cavity surface-emitting lasers with petal-shape holey structure , 2011 .
[18] M. S. Moreolo,et al. Optical Fiber Communication Conference , 2014 .
[19] Yu-Chia Chang,et al. Efficient, High-Data-Rate, Tapered Oxide-Aperture Vertical-Cavity Surface-Emitting Lasers , 2009, IEEE Journal of Selected Topics in Quantum Electronics.
[20] Jerry R. Meyer,et al. Band parameters for III–V compound semiconductors and their alloys , 2001 .
[21] S. Corzine,et al. High-Speed 985 nm Bottom-Emitting VCSEL Arrays for Chip-to-Chip Parallel Optical Interconnects , 2007, IEEE Journal of Selected Topics in Quantum Electronics.
[22] Li Qin,et al. Design and optimization of DBR in 980 nm bottom-emitting VCSEL , 2009, Science in China Series F: Information Sciences.
[23] Nikolai N. Ledentsov,et al. 120°C 20 Gbit/s operation of 980 nm VCSEL , 2008 .