Zhao Huijie, Cheng Chi, Guo Qi, Yu Kai, Yang Yutian
School of Instrumentation and Opto-Electronic Engineering, Beihang University, Beijing 100191, China.
Institute of Artificial Intelligence, Beihang University, Beijing 100191, China.
Materials (Basel). 2024 Feb 20;17(5):967. doi: 10.3390/ma17050967.
The angular and spectral properties crucial for the functionality of acousto-optic (AO) devices are determined by phase-matching geometries in AO interactions. In applications such as spectral imagers based on acousto-optic tunable filters (AOTFs), systematic throughput is constrained by the angle separating diffracted and transmitted light. This research introduces an analytical model that elucidates the angular-spectral properties of diffracted beams in mercurous halide crystals. These crystals possess a wide transmissive spectral range, from visible light to long-wave infrared light. The study computes and confirms correlations between the separation angle and parameters including incident angle, polarization, acoustic angle, and crystal birefringence. Experimental validation conducted on mercurous halide and tellurium dioxide crystals demonstrates that higher birefringence in crystals significantly amplifies the separation angle, augmenting the device's performance. The study contributes to the development of devices with large separation angles during the design phase, enhancing systematic throughput in spectral imaging applications.
声光(AO)器件功能所至关重要的角度和光谱特性由AO相互作用中的相位匹配几何结构决定。在基于声光可调谐滤波器(AOTF)的光谱成像仪等应用中,系统通量受到衍射光和透射光分离角度的限制。本研究引入了一个分析模型,该模型阐明了卤化亚汞晶体中衍射光束的角光谱特性。这些晶体具有从可见光到长波红外光的宽透射光谱范围。该研究计算并证实了分离角与包括入射角、偏振、声角和晶体双折射等参数之间的相关性。在卤化亚汞和二氧化碲晶体上进行的实验验证表明,晶体中较高的双折射会显著增大分离角,从而提高器件性能。该研究有助于在设计阶段开发具有大分离角的器件,提高光谱成像应用中的系统通量。