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基于偏振牵引辅助布里渊散射并结合外差检测的阿秒分辨率光谱分析。

Attometer resolution spectral analysis based on polarization pulling assisted Brillouin scattering merged with heterodyne detection.

作者信息

Preussler Stefan, Schneider Thomas

出版信息

Opt Express. 2015 Oct 5;23(20):26879-87. doi: 10.1364/OE.23.026879.

Abstract

Spectral analysis is essential for measuring and monitoring advanced optical communication systems and the characterization of active and passive devices like amplifiers, filters and especially frequency combs. Conventional devices have a limited resolution or tuning range. Therefore, the true spectral shape of the signal remains hidden. In this work, a small part of the signal under test is preselected with help of the polarization pulling effect of stimulated Brillouin scattering where all unwanted spectral components are suppressed. Subsequently, this part is analyzed more deeply through heterodyne detection. Thereby, the local oscillator is generated from a narrow linewidth fiber laser which acts also as pump wave for Brillouin scattering. By scanning the pump wave together with the local oscillator through the signal spectrum, the whole signal is measured. The method is tunable over a broad wavelength range, is not affected by unwanted mixing products and utilizes a conventional narrow bandwidth photo diode. First proof of concept experiments show the measurement of the power spectral density function with a resolution in the attometer or lower kilohertz range at 1550 nm.

摘要

光谱分析对于测量和监测先进的光通信系统以及诸如放大器、滤波器尤其是频率梳等有源和无源器件的特性至关重要。传统器件具有有限的分辨率或调谐范围。因此,信号的真实光谱形状仍然隐藏着。在这项工作中,借助受激布里渊散射的偏振牵引效应预先选择被测信号的一小部分,其中所有不需要的光谱成分都被抑制。随后,通过外差检测对这一部分进行更深入的分析。由此,本地振荡器由窄线宽光纤激光器产生,该激光器也用作布里渊散射的泵浦波。通过将泵浦波与本地振荡器一起扫描信号光谱,测量整个信号。该方法在很宽的波长范围内是可调谐的,不受不需要的混频产物的影响,并使用传统的窄带宽光电二极管。概念验证实验首次表明,在1550 nm处能够以阿托米或更低的千赫兹范围的分辨率测量功率谱密度函数。

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