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Spectrally Resolved, Broadband Frequency Response Characterization of Photodetectors using Continuous-Wave Supercontinuum Sources

机译:光谱分辨,使用连续波超级源光电探测器的宽带频率响应表征

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A simple and powerful method using continuous wave supercontinuum lasers is demonstrated to perform spectrally resolved, broadband frequency response characterization of photodetectors in the NIR Band. In contrast to existing techniques, this method allows for a simple system to achieve the goal, requiring just a standard continuous wave(CW) high-power fiber laser source and an RF spectrum analyzer. From our recent work, we summarize methods to easily convert any high-power fiber laser into a CW supercontinuum. These sources in the time domain exhibit interesting properties all the way down to the femtosecond time scale. This enables measurement of broadband frequency response of photodetectors while the wide optical spectrum of the supercontinuum can be spectrally filtered to obtain this information in a spectrally resolved fashion. The method involves looking at the RF spectrum of the output of a photodetector under test when incident with the supercontinuum. By using prior knowledge of the RF spectrum of the source, the frequency response can be calculated. We utilize two techniques for calibration of the source spectrum, one using a prior measurement and the other relying on a fitted model. Here, we characterize multiple photodetectors from 150MHz bandwidth to>20GHz bandwidth at multiple bands in the NIR region. We utilize a supercontinuum source spanning over 700nm bandwidth from 1300nm to 2000nm. For spectrally resolved measurement, we utilize multiple wavelength bands such as around 1400nm and 1600nm. Interesting behavior was observed in the frequency response of the photodetectors when comparing broadband spectral excitation versus narrower band excitation.
机译:使用连续波超连续激光器的简单且强大的方法进行了说明在NIR频段中进行光电探测器的光谱分辨,宽带频率响应表征。与现有技术相比,该方法允许简单的系统实现目标,只需要标准连续波(CW)高功率光纤激光源和RF谱分析仪。从我们最近的工作来看,我们总结了易于将任何高功率光纤激光器转换为CW超级性的方法。时域中的这些来源表现出有趣的属性一直到飞秒时间尺度。这使得能够测量光电探测器的宽带频率响应,而可以频谱地滤波超强突变的宽光谱以以光谱分辨的方式获得该信息。该方法涉及在与超级连续事件入射时在测试中观察在测试中的输出的RF谱。通过使用源的RF频谱的先验知识,可以计算频率响应。我们利用两种技术来校准源谱,使用先前的测量,另一个依赖于拟合模型。在这里,我们在NIR区域中的多个频带中将多个光电探测器从150MHz带宽到> 20GHz带宽的表征。我们利用超过1300nm至2000nm的700nm带宽超过700nm的超级源。对于光谱解析测量,我们利用多个波长带,例如约1400nm和1600nm。在比较宽带光谱激励与较窄带激励的宽带光谱激发时,在光电探测器的频率响应中观察到有趣的行为。

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