Atalar Okan, Van Laer Raphaël, Safavi-Naeini Amir H, Arbabian Amin
Department of Electrical Engineering, Stanford University, Stanford, CA, 94305, USA.
Department of Applied Physics and Ginzton Laboratory, Stanford University, Stanford, CA, 94305, USA.
Nat Commun. 2022 Mar 22;13(1):1526. doi: 10.1038/s41467-022-29204-9.
Intensity modulators are an essential component in optics for controlling free-space beams. Many applications require the intensity of a free-space beam to be modulated at a single frequency, including wide-field lock-in detection for sensitive measurements, mode-locking in lasers, and phase-shift time-of-flight imaging (LiDAR). Here, we report a new type of single frequency intensity modulator that we refer to as a longitudinal piezoelectric resonant photoelastic modulator. The modulator consists of a thin lithium niobate wafer coated with transparent surface electrodes. One of the fundamental acoustic modes of the modulator is excited through the surface electrodes, confining an acoustic standing wave to the electrode region. The modulator is placed between optical polarizers; light propagating through the modulator and polarizers is intensity modulated with a wide acceptance angle and record breaking modulation efficiency in the megahertz frequency regime. As an illustration of the potential of our approach, we show that the proposed modulator can be integrated with a standard image sensor to effectively convert it into a time-of-flight imaging system.
强度调制器是光学领域中控制自由空间光束的关键部件。许多应用都要求自由空间光束的强度以单一频率进行调制,包括用于灵敏测量的宽场锁相检测、激光中的锁模以及相移飞行时间成像(激光雷达)。在此,我们报道了一种新型的单频强度调制器,我们将其称为纵向压电共振光弹调制器。该调制器由一个涂有透明表面电极的薄铌酸锂晶片组成。调制器的一种基本声学模式通过表面电极被激发,将一个声学驻波限制在电极区域。调制器置于光学偏振器之间;穿过调制器和偏振器传播的光在兆赫兹频率范围内以宽接收角进行强度调制,且调制效率破纪录。作为我们方法潜力的一个例证,我们展示了所提出的调制器可与标准图像传感器集成,从而有效地将其转换为一个飞行时间成像系统。