2–10 μs,—approximately À130 dB/Hz at QWLD utilization with the optical line
width of 3 kHz at application of optical fibers with delay 10–50 μs,
– Approximately À150 to À160 dB/Hz at QWLD utilization with the optical line
width less than 5 kHz at application of optical fibers with delay 10–50 μs at
complex optimization of OEO MZ and utilization of PLL system.
Presented scientific results, conclusions and recommendations permit to think
about the discovering of the new direction in the field of the compact precision
sources of microwave and mm-wave oscillations.
References
1. Alexander A. Bortsov and Sergey M. Smolskiy, Opto-Electronic Oscillator with Mach-Zender
Modulator. Infocommunications Journal, Vol. XI, No 1, 45–53 (2019), DOI: 10.13140/
RG.2.2.20992.69126
2. I.V. Komarov, S.M. Smolskiy, Fundamentals of short-range FM radar (Norwood, Artech
House, 2003)
3. V. Zhalud, V.N. Kuleshov, Noise in Semiconductor Devices. Under Edition of A.K. Naryshkin
(Sovetskoe Radio, 416 p. (in Russian), Moscow, 1977)
4. Alexander A. Bortsov, Yuri B. Il’in, Laser spectral line widening effect on RF phase and
amplitude noises of an optoelectronic oscillator OEO. J. Radio Eng. (2), 21–31 (2010), DOI:
10.13140/RG.2.2.35665.07527
5. D.B. Leeson, A simple model of feed back oscillator noise spectrum. Proc. IEEE 54, 329–330
(1966)
6. V.D. Kurnosov, V.I. Magalyas, A.A. Pleshkov, L.A. Rivlin, V.G. Trukhan, V.V. Svetkov, Selfmodulation of semiconductor injection laser. Pis’ma Zh. Eksp. Teor. Fiz. 4(11), 449 (1966)
7. L.A. Rivlin, Dynamics of Semiconductor Laser Emission [in Russian] (Sovetskoe Radio,
Moscow, 1976)
8. J.E. Ripper, T.L. Paoli, J.C. Dyment, Characteristics of bistable CW GaAs junction lasers
operating above the delay-transition temperature. IEEE J. Quantum Electron. 6(6), 300–304
(1970)
9. C.A. Brackett, Second-order dispersion in oscillating GaAs junction lasers. IEEE J. Quantum
Electron. QE-8(2), 66–69. 27.279 (1972)
366
6 Operation Analysis of Optoelectronic oscillator (OEO) with External. . .
width of 3 kHz at application of optical fibers with delay 10–50 μs,
– Approximately À150 to À160 dB/Hz at QWLD utilization with the optical line
width less than 5 kHz at application of optical fibers with delay 10–50 μs at
complex optimization of OEO MZ and utilization of PLL system.
Presented scientific results, conclusions and recommendations permit to think
about the discovering of the new direction in the field of the compact precision
sources of microwave and mm-wave oscillations.
References
1. Alexander A. Bortsov and Sergey M. Smolskiy, Opto-Electronic Oscillator with Mach-Zender
Modulator. Infocommunications Journal, Vol. XI, No 1, 45–53 (2019), DOI: 10.13140/
RG.2.2.20992.69126
2. I.V. Komarov, S.M. Smolskiy, Fundamentals of short-range FM radar (Norwood, Artech
House, 2003)
3. V. Zhalud, V.N. Kuleshov, Noise in Semiconductor Devices. Under Edition of A.K. Naryshkin
(Sovetskoe Radio, 416 p. (in Russian), Moscow, 1977)
4. Alexander A. Bortsov, Yuri B. Il’in, Laser spectral line widening effect on RF phase and
amplitude noises of an optoelectronic oscillator OEO. J. Radio Eng. (2), 21–31 (2010), DOI:
10.13140/RG.2.2.35665.07527
5. D.B. Leeson, A simple model of feed back oscillator noise spectrum. Proc. IEEE 54, 329–330
(1966)
6. V.D. Kurnosov, V.I. Magalyas, A.A. Pleshkov, L.A. Rivlin, V.G. Trukhan, V.V. Svetkov, Selfmodulation of semiconductor injection laser. Pis’ma Zh. Eksp. Teor. Fiz. 4(11), 449 (1966)
7. L.A. Rivlin, Dynamics of Semiconductor Laser Emission [in Russian] (Sovetskoe Radio,
Moscow, 1976)
8. J.E. Ripper, T.L. Paoli, J.C. Dyment, Characteristics of bistable CW GaAs junction lasers
operating above the delay-transition temperature. IEEE J. Quantum Electron. 6(6), 300–304
(1970)
9. C.A. Brackett, Second-order dispersion in oscillating GaAs junction lasers. IEEE J. Quantum
Electron. QE-8(2), 66–69. 27.279 (1972)
366
6 Operation Analysis of Optoelectronic oscillator (OEO) with External. . .
