Atalar Okan, Yee Steven, Safavi-Naeini Amir H, Arbabian Amin
Opt Express. 2022 Dec 19;30(26):47103-47114. doi: 10.1364/OE.476970.
The capability to modulate the intensity of an optical beam has scientific and practical significance. In this work, we demonstrate Y-Z cut lithium niobate acousto-optic modulators with record-high modulation efficiency, requiring only 1.5 W/cm for 100% modulation at 7 MHz. These modulators use a simple fabrication process; coating the top and bottom surfaces of a thin lithium niobate wafer with transparent electrodes. The fundamental shear acoustic mode of the wafer is excited through the transparent electrodes by applying voltage with frequency corresponding to the resonant frequency of this mode, confining an acoustic standing wave to the electrode region. Polarization of light propagating through this region is modulated at the applied frequency. Polarization modulation is converted to intensity modulation by placing the modulator between polarizers. To showcase an important application space for this modulator, we integrate it with a standard image sensor and demonstrate 4 megapixel time-of-flight imaging.
调制光束强度的能力具有科学和实际意义。在这项工作中,我们展示了具有创纪录的高调制效率的Y-Z切割铌酸锂声光调制器,在7兆赫兹频率下实现100%调制仅需1.5瓦/平方厘米。这些调制器采用简单的制造工艺;在薄铌酸锂晶片的上下表面涂覆透明电极。通过施加与该模式的共振频率对应的频率的电压,通过透明电极激发晶片的基本剪切声模式,将声驻波限制在电极区域。通过该区域传播的光的偏振在施加的频率下被调制。通过将调制器置于偏振器之间,将偏振调制转换为强度调制。为了展示该调制器的一个重要应用空间,我们将其与标准图像传感器集成,并展示了400万像素的飞行时间成像。