[1] ZHANG D M. Research on high quality chaotic signal acquisition based on mutual coupled ring laser[J]. Laser Technology, 2020, 44(4): 466-470 (in Chinese).
[2] ZHANG D M. Study on optical feedback dynamics based on semiconductor ring lasers[J]. Laser Technology, 2019, 43(6): 789-794 (in Chinese).
[3] QI X Q, LIU J M. Photonic microwave applications of the dynamics of semiconductor lasers[J]. IEEE Journal of Selected Topics in Quantum Electronics, 2011, 17(5): 1198-1211. doi: 10.1109/JSTQE.2011.2121055
[4] CHAN S C, LIU J M. Microwave frequency division and multiplication using an optically injected semiconductor laser[J]. IEEE Journal of Quantum Electronics, 2005, 41(9): 1142-1147. doi: 10.1109/JQE.2005.852803
[5] YAO J P. Microwave photonics[J]. Journal of Lightwave Technology, 2009, 27(3): 314-335. doi: 10.1109/JLT.2008.2009551
[6] CAPMANY J, NOVAK D. Microwave photonics combines two worlds[J]. Nature Photonics, 2007, 1(6): 319-330. doi: 10.1038/nphoton.2007.89
[7] WIECZOREK S, SIMPSON T B, KRAUSKOPF B, et al. Bifurcation transitions in an optically injected diode laser: Theory and experiment[J]. Optics Communications, 2003, 215(1): 125-134.
[8] HURTADO A, HENNING I D, ADAMS M J, et al. Generation of tunable millimeter-wave and THz signals with an optically injected quantum dot distributed feedback laser[J]. IEEE Photonics Journal, 2013, 5(4): 5900107. doi: 10.1109/JPHOT.2013.2267535
[9] WANG C, RAGHUNATHAN R, SCHIRES K, et al. Optically injected InAs/GaAs quantum dot laser for tunable photonic microwave ge-neration[J]. Optics Letters, 2016, 41(6): 1153-1156. doi: 10.1364/OL.41.001153
[10] PEREZ P, QUIRCE A, VALLE A, et al. Photonic generation of microwave signals using a single mode VCSEL subject to double-beam orthogonal optical injection[J]. IEEE Photonics Journal, 2015, 7(1): 5500614.
[11] LIN H, OURARI S, HUANG T, et al. Photonic microwave generation in multimode VCSELs subject to orthogonal optical injection[J]. Journal of the Optical Society of America, 2017, B34(11): 2381-2389.
[12] POCHET M, LOCKE T, USECHAK N G. Generation and modulation of a millimeter-wave subcarrier on an optical frequency generated via optical injection[J]. IEEE Photonics Journal, 2012, 4(5): 1881-1891. doi: 10.1109/JPHOT.2012.2219042
[13] CHENG C H, LEE C W, LIN T W, et al. Double-frequency laser Doppler velocimeter for speckle noise reduction and coherence enhancement[J]. Optics Express, 2012, 20(18): 20255-20265. doi: 10.1364/OE.20.020255
[14] ZHUANG J P, CHAN S C. Phase noise characteristics of microwave signals generated by semiconductor laser dynamics[J]. Optics Express, 2015, 23(3): 2777-2797. doi: 10.1364/OE.23.002777
[15] SIMPSON T B, DOFT F. Double-locked laser diode for microwave photonics applications[J]. IEEE Photonics Technology Letters, 1999, 11(11): 1476-1478. doi: 10.1109/68.803084
[16] JI S K, XUE C P, VALLE A, et al. Stabilization of photonic microwave generation in vertical-cavity surface-emitting lasers with optical injection and feedback[J]. Journal of Lightwave Technology, 2018, 36(19): 4347-4353. doi: 10.1109/JLT.2018.2815581
[17] XUE C P, CHANG G D, FAN Y L, et al. Characteristics of microwave photonic signal generation using vertical-cavity surface-emitting lasers with optical injection and feedback[J]. Journal of the Optical Society of America, 2020, B 37(5): 1394-1400.
[18] SIMPSON T B, LIU J M, ALMULLA M, et al. Linewidth sharpening via polarization rotated feedback in optically injected semiconductor laser oscillators[J]. IEEE Journal of Selected Topics in Quantum Electronics, 2013, 19(14): 1500807.
[19] LO K H, HWANG S K, DONATI S. Numerical study of ultrashort-optical-feedback enhanced photonic microwave generation using optically injected semiconductor lasers at period-one nonlinear dynamics[J]. Optics Express, 2017, 25(25): 31595-31611. doi: 10.1364/OE.25.031595
[20] ZHUANG J P, CHAN S C. Tunable photonic microwave generation using optically injected semiconductor laser dynamics with optical feedback stabilization[J]. Optics Letters, 2013, 38(3): 344-346. doi: 10.1364/OL.38.000344
[21] LI S S, CHAN S C. Chaotic Time-delay signature suppression in a semiconductor laser with frequency-detuned grating feedback[J]. IEEE Journal of Selected Topics in Quantum Electronics, 2015, 21(6): 1800812.
[22] OHTSUBO J. Semiconductor lasers (stability, instability and chaos)[M]. 3rd ed. New York, USA: Springer, 2005: 170-172.