Dennis Tasshi, Hale Paul D
National Institute of Standards and Technology, 325 Broadway, Boulder, CO 80305, USA.
Opt Express. 2011 Oct 10;19(21):20103-14. doi: 10.1364/OE.19.020103.
We demonstrate a high-accuracy heterodyne measurement system for characterizing the magnitude of the frequency response of high-speed 1.55 µm photoreceivers from 2 MHz to greater than 50 GHz. At measurement frequencies below 2 GHz, we employ a phase-locked loop with a double-heterodyne detection scheme, which enables precise tuning of the heterodyne beat frequency with an RF synthesizer. At frequencies above 2 GHz the system is operated in free-run mode with thermal tuning of the laser beat frequency. We estimate the measurement uncertainties for the low frequency range and compare the measured high-frequency response of a photoreceiver to a measurement using electro-optic sampling.
我们展示了一种高精度外差测量系统,用于表征高速1.55 µm光接收器在2 MHz至大于50 GHz频率范围内的频率响应幅度。在低于2 GHz的测量频率下,我们采用具有双外差检测方案的锁相环,该方案能够通过射频合成器精确调谐外差拍频。在高于2 GHz的频率下,系统以自由运行模式运行,通过热调谐激光拍频。我们估计了低频范围的测量不确定度,并将光接收器的高频响应测量结果与电光采样测量结果进行了比较。