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Oscilloscopic Capture of Greater-Than-100 GHz, Ultra-Low Power Optical Waveforms Enabled by Integrated Electrooptic Devices

机译:通过集成电光器件启用的大于100 GHz的示波器捕获大于100 GHz,超低功耗光学波形

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摘要

Direct time-domain sampling oscilloscopic capture of ultra-high bandwidth (32-102 GHz) modulated optical waveforms at 1550 nm is demonstrated at optical power levels below -100 dBm. To detect fast optical waveforms directly at power levels far below what traditional optical oscilloscope methods can measure, we use a time-correlated single-photon counting (TCSPC) sampling acquisition method, recently developed integrated electro-optic devices with >100 GHz electro-optic bandwidth, and single photon detectors with < 5 ps jitter. We show the reconstruction of the time domain signals by collecting histograms of time-binned single photons captured using TCSPC and characterize the spectral components in the frequency domain. The ability to acquire ultra-weak eye diagrams and identify high-frequency spectral components from a relatively small ensemble of single-photon measurements may lead to significant advances in optical waveform capture technology.
机译:在低于-100dBm的光功率水平下,在1550nm下对超高带宽(32-102GHz)调制光波的直接时域采样示波器捕获在-100dBm以下的光功率水平上进行说明。 要在低于传统的光学示波器方法可以测量的功率水平直接检测快光波形,我们使用时间相关的单光子计数(TCSPC)采样采集方法,最近开发了具有> 100 GHz电光的集成电光器件 带宽和具有<5 ps抖动的单光子探测器。 我们通过收集使用TCSPC捕获的时间箱单个光子的直方图来展示时域信号的重建,并表征频域中的光谱分量。 获取超弱眼图和从单光子测量的相对小的集合识别高频光谱分量的能力可能导致光波形捕获技术的显着进步。

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