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Titlebook: Laser Optoelectronic Oscillators; Alexander A. Bortsov,Yuri B. Il’in,Sergey M. Smols Book 2020 The Editor(s) (if applicable) and The Autho

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Introduction,budgets are concentrated, is the development, creation, and manufacture of commercially available high-stable oscillators of microwave and millimeter-wave ranges with the ultralow phase noise: less than −140 dB/Hz at offset of 1–100 kHz from a carrier [1–5].
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Nanostructural Optoelectronic Oscillators with the Fiber-Optical Delay Line, source of microwave and mm-wave precision oscillations, which is initially studied a little. Features, advantages and shortcomings of these oscillators are described for two types of optical emission modulations: the direct modulation and the external modulation with the special modulators. Possibl
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Modulation Methods of Laser Emission in Optoelectronic oscillator (OEO) and OEO Differential Equatictronic oscillator on the base of nonlinear differential equations. Sections of this chapter present two methods of the laser emission modulation: the direct (internal) electrical method and the external modulation through the electro-optical modulator offered by Mach and Zehnder. Before beginning o
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Optoelectronic oscillator (OEO) Differential Equations as the Laser System with Modulation and Posin, which is spanned by the positive feedback loop. We compose symbolic and abbreviated equations of OEO and examine its analog model taking into consideration the laser fluctuations. We discuss the symbolic differential equations of ОЕО with direct modulation and ОЕО with Mach–Zehnder modulator. We
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Optoelectronic oscillator (OEO) as the Time and Spatial Correlator of Random Variables with Differel of nonsymmetrical dielectric waveguide structure of the laser and the optical waveguide. Then, we analyze the OEO with the direct modulation on the base of abbreviated differential equations and discuss the problems of the frequency control in OEO DM by the laser pumping current. Then we examine t
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