Acta Optica Sinica, Volume. 37, Issue 3, 314001(2017)
Tunnel Junction Cascade Quantum Well Mode-Locked Laser
[1] [1] Li Pan, Shi Lei, Wang Xuefeng, et al. Experimental investigation of the supercontinuum generated by amplificated high repetition mode-locked pulses[J]. Acta Optica Sinica, 2015, 35(s2): s214006.
[2] [2] Gou Doudou, Yang Sigang, Yin Feifei, et al. Widely tunable mode-locked fiber laser operating in 1 μm wavelength range[J]. Acta Optica Sinica, 2013, 33(7): 0706013.
[3] [3] Liu S, Wang H, Sun M, et al. AWG-based monolithic GHz multichannel harmonically mode-locked laser[J]. IEEE Photonics Technology Letters, 2016, 28(3): 241-244.
[4] [4] Merghem K, Akrout A, Martinez A, et al. Short pulse generation using a passively mode locked single InGaAsP/InP quantum well laser[J]. Optics Express, 2008, 16(14): 10675-10683.
[5] [5] Sarailou E, Ardey A, Delfyett P J. Alinearized intensity modulator for photonic analog-to-digital conversion using an injection-locked mode-locked laser[J]. Journal of Lightwave Technology, 2014, 32(21): 3440-3445.
[6] [6] Nagatsuma T, Shinagawa M, Sabri N, et al. 1.55 μm photonic systems for microwave and millimeter-wave measurement[J]. IEEE Transactions on Microwave Theory and Techniques, 2001, 49(10): 1831-1839.
[7] [7] Hellwarth R, Christensen P. Nonlinear optical microscope using second harmonic generation[J]. Appl Opt, 1975, 14(2): 247-248.
[8] [8] Wang H, Kong L, Forrest A, et al. Ultrashort pulse generation by semiconductor mode-locked lasers at 760 nm[J]. Optics Express, 2014, 22(21): 25940-25946.
[9] [9] Fukuda M, Okayasu M, Temmyo J, et al. Degradation behavior of 0.98-μm strained quantum well InGaAs/AlGaAs lasers under high-power operation[J]. IEEE Journal of Quantum Electronics, 1994, 30(2): 471-476.
[10] [10] Makino T, Evans J D, Mak G.Maximum output power and maximum operating temperature of quantum well lasers[J]. Applied Physics Letters, 1997, 71(20): 2871-2873.
[11] [11] Lian Peng, Yin Tao, Gao Guo, et al. Novel coupled multi-active region high power semiconductor lasers cascaded via tunnel junction[J]. Acta Physica Sinica, 2000, 49(12): 2374-2377.
[13] [13] Lentine A L, Miller D A B, Henry J E, et al. Multistate self-electro optic effect devices[J]. IEEE Journal of Quantum Electronics, 1989, 25(8): 1921-1927.
[14] [14] Williams K A, Thompson M G, White I H. Long-wavelength monolithic mode-locked diode lasers[J]. New Journal of Physics, 2004, 6(1): 179.
[15] [15] Gopinath J T, Chann B, Huang R K, et al. 980-nm monolithic passively mode-locked diode lasers with 62 pJ of pulse energy[J]. IEEE Photonics Technology Letters, 2007, 19(12): 937-939.
[16] [16] Lorenser D, Unold H J, Maas D, et al. Towards wafer-scale integration of high repetition rate passively mode-locked surface-emitting semiconductor lasers[J]. Applied Physics B, 2004, 79(8): 927-932.
Get Citation
Copy Citation Text
Liu Zhen, Wang Jiaqi1, Yu Hongyan, Zhou Xuliang, Chen Weixi, Ding Ying, Li Zhaosong, Wang Wei, Pan Jiaoqing. Tunnel Junction Cascade Quantum Well Mode-Locked Laser[J]. Acta Optica Sinica, 2017, 37(3): 314001
Category: Lasers and Laser Optics
Received: Oct. 10, 2016
Accepted: --
Published Online: Mar. 8, 2017
The Author Email: Zhen Liu (liuzhen@semi.ac.cn)