Vibration-induced PM noise measurements of a rigid optical fiber spool

J. Taylor, C. Nelson, A. Hati, N. Ashby, D. Howe
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引用次数: 10

Abstract

The opto-electronic oscillator (OEO) has emerged in recent years as an excellent low-noise source that rivals the best RF oscillators over broad offset frequencies. The main sources of noise in an OEO are the laser and RF modulator, photo detector, loop amplifier, and the long fiber that is needed for high Q. Recent studies have shown that even by using state-of-the-art components and a low-loss long fiber, the phase-modulated (PM) noise of these OEOs fails to meet the theoretical value at offset frequencies close to carrier, from a few hertz to 1 kHz. The main cause for this shortfall is vibration effects on the optical fiber. External, environmental vibration causes mechanical distortions in the fiber that induce time-delay (phase) fluctuations. The spool onto which the fiber is wound is primarily responsible for imparting these vibration-induced delay fluctuations to the fiber and thus diminishing the performance of the OEO. In this paper, we compare the vibration-induced phase fluctuations of a 3 km optical fiber wound on spools made of four materials-metal, ceramic, plastic, and foam-covered plastic. We investigate fiber-on-spool winding and mounting techniques that reduce vibration susceptibility. We present residual PM measurements that compare the vibration sensitivity of an optical fiber wound on these different materials.
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刚性光纤线轴振动诱导PM噪声测量
近年来,光电振荡器(OEO)作为一种优秀的低噪声源出现,在宽偏置频率上可与最好的射频振荡器相媲美。OEO中的主要噪声源是激光和射频调制器、光电探测器、环路放大器和高q所需的长光纤。最近的研究表明,即使使用最先进的组件和低损耗的长光纤,这些OEO的相位调制(PM)噪声在接近载波的偏移频率处(从几赫兹到1 kHz)也不能满足理论值。造成这种不足的主要原因是振动对光纤的影响。外部环境的振动会引起光纤的机械变形,从而引起时延(相位)波动。缠绕光纤的线轴主要负责将这些振动引起的延迟波动传递给光纤,从而降低OEO的性能。在本文中,我们比较了缠绕在金属、陶瓷、塑料和泡沫覆盖塑料四种材料制成的线轴上的3公里光纤的振动诱导相位波动。我们研究了减少振动敏感性的光纤卷绕和安装技术。我们提出了残余PM测量,比较在这些不同材料上缠绕的光纤的振动灵敏度。
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