McKenzie Kirk, Gray Malcolm B, Lam Ping Koy, McClelland David E
Center for Gravitational Physics, Department of Physics, Faculty of Science, The Australian National University, ACT 0200, Australia.
Appl Opt. 2007 Jun 10;46(17):3389-95. doi: 10.1364/ao.46.003389.
Homodyne detection relies on the beat between a relatively strong local oscillator (LO) field at the carrier frequency and a signal beam with sidebands centered around the carrier frequency. This type of signal detection, or signal readout, is widely used in quantum optics applications and is expected to be used in advanced interferometric gravitational wave detectors. We investigate experimentally the limitations to making such measurements in a laboratory environment at audio frequencies. We find that beam jitter noise, electronic noise of the photodetectors, and the LO intensity noise can limit the homodyne detection in this frequency band, and we discuss potential solutions.
零差检测依赖于载波频率处相对较强的本地振荡器(LO)场与以载波频率为中心的边带信号光束之间的拍频。这种类型的信号检测或信号读出在量子光学应用中被广泛使用,并且有望用于先进的干涉式引力波探测器。我们在实验室环境中对音频频率下进行此类测量的局限性进行了实验研究。我们发现光束抖动噪声、光电探测器的电子噪声以及本地振荡器强度噪声会限制该频段的零差检测,并且我们讨论了潜在的解决方案。