论文标题

实验室中的连续重力波:带有台式光学麦克风的恢复音频信号

Continuous gravitational waves in the lab: recovering audio signals with a table-top optical microphone

论文作者

Gardner, James W., Middleton, Hannah, Liu, Changrong, Melatos, Andrew, Evans, Robin, Moran, William, Beniwal, Deeksha, Cao, Huy Tuong, Ingram, Craig, Brown, Daniel, Ng, Sebastian

论文摘要

世界各地的引力波观测站正在寻找连续的波浪:来自旋转中子星等来源的持续信号。这些搜索使用复杂的统计技术来在嘈杂的数据中寻找弱信号。在本文中,我们使用台式模型重力波检测器来证明这些技术:米歇尔森干涉仪,其中声音用作引力波的类似物。使用来自连续波搜索的信号处理技术,我们演示了具有恒定和流浪频率的音调的恢复。我们还通过将其用作“光学麦克风”来捕获音乐和语音的“光学麦克风”,探索干涉仪作为教育工作者的教学工具。补充材料中详细介绍了用于从嘈杂数据中恢复信号的一系列过滤技术。在这里,我们使用组合的Notch Plus Wiener过滤器和统计日志最小均方误差(LOGMMSE)估计器介绍了结果的亮点。使用这些技术,我们可以轻松地恢复简单的和弦和鼓的录音,但是复杂的音乐和语音更具挑战性。这项演示可以由本科实验室中的教育者使用,并且可以适应非专业观众将引力波和信号处理主题传达。

Gravitational-wave observatories around the world are searching for continuous waves: persistent signals from sources such as spinning neutron stars. These searches use sophisticated statistical techniques to look for weak signals in noisy data. In this paper, we demonstrate these techniques using a table-top model gravitational-wave detector: a Michelson interferometer where sound is used as an analog for gravitational waves. Using signal processing techniques from continuous-wave searches, we demonstrate the recovery of tones with constant and wandering frequencies. We also explore the use of the interferometer as a teaching tool for educators in physics and electrical engineering by using it as an "optical microphone" to capture music and speech. A range of filtering techniques used to recover signals from noisy data are detailed in the Supplementary Material. Here, we present highlights of our results using a combined notch plus Wiener filter and the statistical log minimum mean-square error (logMMSE) estimator. Using these techniques, we easily recover recordings of simple chords and drums, but complex music and speech are more challenging. This demonstration can be used by educators in undergraduate laboratories and can be adapted for communicating gravitational-wave and signal-processing topics to non-specialist audiences.

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