We offer to use OEO with RF FODL in the microwave and mm-wave ranges in
onboard usual radar and optical radar systems.
References
1. X.S. Yao, L. Maleki, Multiloop optoelectronic oscillator. IEEE J. Quantum Electron. 36(1),
79–84 (2000)
2. D. Eliyahu, L. Maleki, Low phase noise and spurious level in multiloop optoelectronic
oscillator, in Proceedings of IEEE International Frequency Control Symposium (2003), p. 405
3. C.W. Nelson, A. Hati, D.A. Howe, Microwave optoelectronic oscillator with optical gain, in
Proceedings of the IEEE International Frequency Control Symposium (FCS ’07), vol. 31
(7) (2007), pp. 1014–1019
4. W. Zhou, G. Blasche, Injection-locked dual opto-electronic oscillator with ultra-low phase
noise and ultra-low spurious level. IEEE Trans. Microwave Theory Tech. 53(3I), 929–933
(2005)
5. K. Volyanskiy, J. Cussey, H. Tavernier, P. Salzenstein, G. Sauvage, L. Larger, E. Rubiola,
`Applications of the optical fiber to the. generation and measurement of low-phase-noise
microwave ,J. Opt. Soc. Am. B 25(12), 2140–2150 (2008)
6. Z. Fan, Q. Qiu, S. Jun, T. Zhang, Tunable low-drift spurious-free optoelectronic oscillator based
on injection locking and time delay compensation. Opt. Lett. 44(3), 534–537 (2019)
7. A.A. Bortsov, Y.B. Il’in, New low-noise UHF oscillator with the pumping by the quantum-well
laser diode. Radio-optical technologies in instrumentation: (In Russian), in Proceedings of II
Scientific Conference, 14–21 of September 2004,Sochy,70-71,(2004)
8. G.D. Van Wiggeren, R. Roy, Optical communication with chaotic waveforms. Phys. Rev. Lett.
81(16), 3547–3550 (1998)
9. C.R. Mirasso, I. Fischer, L. Larger, D. Syvridis, Chaotic optical communications. OSA
Technical Digest Series, Optical Society of America, 2005, paper FTuA6 (2005)
10. N. Yu, E. Salik, L. Maleki, Ultralow-noise mode-locked laser with coupled optoelectronic
oscillator configuration. Opt. Lett. 30(10), 1231–1233 (2005)
11. K.-H. Lee et al., A 30-GHz self-injection-locked oscillator having a long optical delay line for
phase-noise reduction. IEEE Photon. Technol. Lett. 19(24), 1982–1984 (2008)
506
8 Experimental Investigations and Practical Circuits of Optoelectronic. . .
onboard usual radar and optical radar systems.
References
1. X.S. Yao, L. Maleki, Multiloop optoelectronic oscillator. IEEE J. Quantum Electron. 36(1),
79–84 (2000)
2. D. Eliyahu, L. Maleki, Low phase noise and spurious level in multiloop optoelectronic
oscillator, in Proceedings of IEEE International Frequency Control Symposium (2003), p. 405
3. C.W. Nelson, A. Hati, D.A. Howe, Microwave optoelectronic oscillator with optical gain, in
Proceedings of the IEEE International Frequency Control Symposium (FCS ’07), vol. 31
(7) (2007), pp. 1014–1019
4. W. Zhou, G. Blasche, Injection-locked dual opto-electronic oscillator with ultra-low phase
noise and ultra-low spurious level. IEEE Trans. Microwave Theory Tech. 53(3I), 929–933
(2005)
5. K. Volyanskiy, J. Cussey, H. Tavernier, P. Salzenstein, G. Sauvage, L. Larger, E. Rubiola,
`Applications of the optical fiber to the. generation and measurement of low-phase-noise
microwave ,J. Opt. Soc. Am. B 25(12), 2140–2150 (2008)
6. Z. Fan, Q. Qiu, S. Jun, T. Zhang, Tunable low-drift spurious-free optoelectronic oscillator based
on injection locking and time delay compensation. Opt. Lett. 44(3), 534–537 (2019)
7. A.A. Bortsov, Y.B. Il’in, New low-noise UHF oscillator with the pumping by the quantum-well
laser diode. Radio-optical technologies in instrumentation: (In Russian), in Proceedings of II
Scientific Conference, 14–21 of September 2004,Sochy,70-71,(2004)
8. G.D. Van Wiggeren, R. Roy, Optical communication with chaotic waveforms. Phys. Rev. Lett.
81(16), 3547–3550 (1998)
9. C.R. Mirasso, I. Fischer, L. Larger, D. Syvridis, Chaotic optical communications. OSA
Technical Digest Series, Optical Society of America, 2005, paper FTuA6 (2005)
10. N. Yu, E. Salik, L. Maleki, Ultralow-noise mode-locked laser with coupled optoelectronic
oscillator configuration. Opt. Lett. 30(10), 1231–1233 (2005)
11. K.-H. Lee et al., A 30-GHz self-injection-locked oscillator having a long optical delay line for
phase-noise reduction. IEEE Photon. Technol. Lett. 19(24), 1982–1984 (2008)
506
8 Experimental Investigations and Practical Circuits of Optoelectronic. . .
