Phase noise of a high performance OEO and an ultra low noise floor cross-correlation microwave photonic homodyne system

D. Eliyahu, D. Seidel, L. Maleki
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引用次数: 106

Abstract

This paper describes two recent types of opto-electronic oscillators. The first is a long fiber opto-electronic oscillator, utilizing a high power laser with long delay, and consisting of low noise components. This oscillator generates a stable 10 GHz signal with phase noise of -163 dBc/Hz at 6 kHz offset from the carrier. The second is a low noise 10 GHz compact opto-electronic oscillator. This latter oscillator consists of coupled optical and microwave loops utilizing a short fiber. We also report on an automatic ultra-low noise floor measurement system, designed and built to measure the phase noise of the above (and other) oscillators. This delay line cross-correlation measurement system utilizes microwave-photonic links, eliminating the need for a second oscillator. This system provides quick and reliable measurement of the oscillator under test.
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高性能OEO与超低噪声底互关微波光子零差系统的相位噪声
本文介绍了两种最新的光电振荡器。第一种是长光纤光电振荡器,利用高功率长延时激光器,由低噪声元件组成。该振荡器产生稳定的10ghz信号,相位噪声为-163 dBc/Hz,与载波偏移6khz。第二种是低噪声10 GHz紧凑型光电振荡器。后一种振荡器由利用短光纤的耦合光环路和微波环路组成。我们还报道了一种自动超低噪声底测量系统,该系统设计和制造用于测量上述(和其他)振荡器的相位噪声。这种延迟线互相关测量系统利用微波-光子链路,消除了对第二个振荡器的需要。该系统对被测振荡器进行快速、可靠的测量。
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