44. V.V. Grigoriants, A.A. Dvornikov, Y.B. Il’in, V.N. Konstantinov, V.A. Prokof’ev, G.M. Utkin,
A laser diode with feedback using a fibre delay line as a stable-frequency signal generator and
potential fibre sensor. Opt. Quantum Electron. 17(4), 263–267 (1985)
45. V.V. Grigoriaynts, Y.B. Il’in, Laser optical fibre heterodyne interferometer with frequency
indicating of the phase shift of a light signal in an optical waveguide. Opt. Quantum Electron. 21
(5), 423–427 (1989)
46. A.A. Bortsov, V.V. Grigoriants, Y.B. Il’in, Effect of the lightguide excitation efficiency on the
frequency of a self-excited oscillator with a differential fiber optic delay line. Telecommun.
Radio Eng. 44(8), 137–142 (1989)
47. X.S. Yao, L. Maleki, Optoelectronic microwave oscillator. J. Opt. Soc. Am. B 13(8),
1725–1735 (1996)
48. Y.X. Steve, L. Maleki, Dual microwave and optical oscillator. Opt. Lett. 22(24), 1867–1869
(1997)
49. J. Lasri, A. Bilenca, G. Eisenstein, D. Ritter, Optoelectronic mixing, modulation and injection
locking in millimeter wave self-oscillating InP/InGaAs heterojunction bipolar photo transistors:
single and dual transistor configurations. IEEE Trans. Microwave Technol. Theory 49,
1934–1939 (2001)
50. J. Lasri, A. Bilenca, D. Dahan, et al., A self-starting hybrid optoelectronic oscillator generating
ultra low jitter 10-GHz optical pulses and low phase noise electrical signals. IEEE Photon.
Technol. Lett. 14(7), 1004–1006 (2002)
51. E. Shumakher, G. Eisenstein, A novel multiloop optoelectronic oscillator. IEEE Photon.
Technol. Lett. 20(22), 1881–1883 (2008)
52. V.V. Grigoriants, A.A. Dvornikov, Y.B. Il’in, et al, Oscillators of the radio-frequency range
with the optical carrier, in Proceeding of MPEI, Issue 607 (1983), pp. 76–79
53. A.A. Dvornikov, Y.B. Il’in, V.N. Konstantinov, About single-frequency modes of the oscillator
with the fiber-optical delay line in the feedback loop. Radio Eng. Electron. 29(11), 2234–2242
(1984)
54. V.V. Grigoriants, A.A. Dvornikov, Y.B. Il’in, et al., Radio signal generation in the system
«laser optical delay line». Quant. Electron. 11(4), 766–775 (1984)
55. A.A. Bortsov, V.V. Grigoriants, Yu. B. Il’in, ,V.N. Konstantinov. Transfer function of a
composite fiber-optic delay line , Telecommun. Radio Eng. 43(9): 40-42, (1988)
56. A.A. Bortsov, V.V. Grigoriantz, Y.B. Il’in, Frequency tuning in a self-excited oscillator with a
fiber-optic delay line. Telecommun. Radio Eng. 44(4), 74–77 (1989)
57. T.V. Babkina, V.V. Grigoriantz, Y.B. Il’in, V.A. Prokof’iev, LASER APPLICATIONS AND
OTHER TOPICS IN QUANTUM ELECTRONICS: Use of a laser oscillator heterodyne
interferometer as an optical sensor of microdisplacements. Soviet J. Quantum Electron. 21
(12), 1384–1387 (1991)
58. T.V. Babkina, V.V. Grigoriantz, Y.B. Il’in, V.A. Prokof’ev, Self-sustained operation of a laser
oscillating Mach-Zehnder interferometer. Soviet J. Quantum Electron. 21(2), 230–231 (1991)
59. A.A. Bortsov, Y.B. Il’in, et al., Device for the functional transformation of acoustic pressure
into frequency. Patent USSR 1,538,265, 1988,DOI: 10.13140/RG.2.2.10736.07688
60. Alexander A. Bortsov, Y.B. Il’in,Opto-electronic oscillator ,Generator of frequency-modulated signals, 2006-08-20, Patent RU2282302C1,2006, DOI: 10.13140/RG.2.2.29610.44488
61. A.A. Bortsov, Phase-frequency and amplitude-frequency characteristics of a mesa-adjusted
laser diode with a modulation frequency band of up to 12 GHz. Radio Eng. (9), 43–47
(2006), DOI: 10.13140/RG.2.2.18285.82408
62. A.A. Bortsov, Y.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
63. A.A. Bortsov, The Influence of the Quality of Laser Resonator to Microwave Phase Noise in
opto-electronic oscillator, Electromagnetic Waves and Electronic Systems, No.11
(Radiotekhnika, Moscow, 2012), DOI:10.13140/RG.2.2.28352.15361
64. A.A. Bortsov, Y.B. Il’in, V.E. Karasik, A. Karachev, et al., Method of manufacturing of work
pieces for opticasing on nitrogen-doped quartz glass, Patent RU 2,537,450, 2015,DOI:
10.13140/RG.2.2.29191.01445
References
13
A laser diode with feedback using a fibre delay line as a stable-frequency signal generator and
potential fibre sensor. Opt. Quantum Electron. 17(4), 263–267 (1985)
45. V.V. Grigoriaynts, Y.B. Il’in, Laser optical fibre heterodyne interferometer with frequency
indicating of the phase shift of a light signal in an optical waveguide. Opt. Quantum Electron. 21
(5), 423–427 (1989)
46. A.A. Bortsov, V.V. Grigoriants, Y.B. Il’in, Effect of the lightguide excitation efficiency on the
frequency of a self-excited oscillator with a differential fiber optic delay line. Telecommun.
Radio Eng. 44(8), 137–142 (1989)
47. X.S. Yao, L. Maleki, Optoelectronic microwave oscillator. J. Opt. Soc. Am. B 13(8),
1725–1735 (1996)
48. Y.X. Steve, L. Maleki, Dual microwave and optical oscillator. Opt. Lett. 22(24), 1867–1869
(1997)
49. J. Lasri, A. Bilenca, G. Eisenstein, D. Ritter, Optoelectronic mixing, modulation and injection
locking in millimeter wave self-oscillating InP/InGaAs heterojunction bipolar photo transistors:
single and dual transistor configurations. IEEE Trans. Microwave Technol. Theory 49,
1934–1939 (2001)
50. J. Lasri, A. Bilenca, D. Dahan, et al., A self-starting hybrid optoelectronic oscillator generating
ultra low jitter 10-GHz optical pulses and low phase noise electrical signals. IEEE Photon.
Technol. Lett. 14(7), 1004–1006 (2002)
51. E. Shumakher, G. Eisenstein, A novel multiloop optoelectronic oscillator. IEEE Photon.
Technol. Lett. 20(22), 1881–1883 (2008)
52. V.V. Grigoriants, A.A. Dvornikov, Y.B. Il’in, et al, Oscillators of the radio-frequency range
with the optical carrier, in Proceeding of MPEI, Issue 607 (1983), pp. 76–79
53. A.A. Dvornikov, Y.B. Il’in, V.N. Konstantinov, About single-frequency modes of the oscillator
with the fiber-optical delay line in the feedback loop. Radio Eng. Electron. 29(11), 2234–2242
(1984)
54. V.V. Grigoriants, A.A. Dvornikov, Y.B. Il’in, et al., Radio signal generation in the system
«laser optical delay line». Quant. Electron. 11(4), 766–775 (1984)
55. A.A. Bortsov, V.V. Grigoriants, Yu. B. Il’in, ,V.N. Konstantinov. Transfer function of a
composite fiber-optic delay line , Telecommun. Radio Eng. 43(9): 40-42, (1988)
56. A.A. Bortsov, V.V. Grigoriantz, Y.B. Il’in, Frequency tuning in a self-excited oscillator with a
fiber-optic delay line. Telecommun. Radio Eng. 44(4), 74–77 (1989)
57. T.V. Babkina, V.V. Grigoriantz, Y.B. Il’in, V.A. Prokof’iev, LASER APPLICATIONS AND
OTHER TOPICS IN QUANTUM ELECTRONICS: Use of a laser oscillator heterodyne
interferometer as an optical sensor of microdisplacements. Soviet J. Quantum Electron. 21
(12), 1384–1387 (1991)
58. T.V. Babkina, V.V. Grigoriantz, Y.B. Il’in, V.A. Prokof’ev, Self-sustained operation of a laser
oscillating Mach-Zehnder interferometer. Soviet J. Quantum Electron. 21(2), 230–231 (1991)
59. A.A. Bortsov, Y.B. Il’in, et al., Device for the functional transformation of acoustic pressure
into frequency. Patent USSR 1,538,265, 1988,DOI: 10.13140/RG.2.2.10736.07688
60. Alexander A. Bortsov, Y.B. Il’in,Opto-electronic oscillator ,Generator of frequency-modulated signals, 2006-08-20, Patent RU2282302C1,2006, DOI: 10.13140/RG.2.2.29610.44488
61. A.A. Bortsov, Phase-frequency and amplitude-frequency characteristics of a mesa-adjusted
laser diode with a modulation frequency band of up to 12 GHz. Radio Eng. (9), 43–47
(2006), DOI: 10.13140/RG.2.2.18285.82408
62. A.A. Bortsov, Y.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
63. A.A. Bortsov, The Influence of the Quality of Laser Resonator to Microwave Phase Noise in
opto-electronic oscillator, Electromagnetic Waves and Electronic Systems, No.11
(Radiotekhnika, Moscow, 2012), DOI:10.13140/RG.2.2.28352.15361
64. A.A. Bortsov, Y.B. Il’in, V.E. Karasik, A. Karachev, et al., Method of manufacturing of work
pieces for opticasing on nitrogen-doped quartz glass, Patent RU 2,537,450, 2015,DOI:
10.13140/RG.2.2.29191.01445
References
13
