首页> 美国卫生研究院文献>Sensors (Basel Switzerland) >Effective Light Beam Modulation by Chirp IDT on a Suspended LiNbO3 Membrane for 3D Holographic Displays
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Effective Light Beam Modulation by Chirp IDT on a Suspended LiNbO3 Membrane for 3D Holographic Displays

机译:Chirp IDT在悬浮的LiNbO3膜上对3D全息显示器进行有效的光束调制

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摘要

An acousto-optic (AO) holographic display unit based on a suspended waveguide membrane was developed. The AO unit consists of a wide bandwidth chirp interdigital transducer (IDT) on a 20 µm thick suspended crystalline 128° YX LiNbO membrane, a light blocker with a 20 µm hole near the entrance, and an active lens near the exit. The 20 µm thickness of the floating membrane significantly enhanced surface acoustic wave (SAW) confinement. The light blocker was installed in front of the AO unit to enhance the coupling efficiency of the incident light to the waveguide membrane and to remove perturbations to the photodetector during measurement at the exit region. The active lens was vertically attached to the waveguide sidewall to collect the diffracted beam without loss and to modulate the focal length in free space through the applied voltage. As SAWs were radiated from the IDT, a Bragg grating with periodic refractive indexes was formed along the waveguide membrane. The grating diffracted incident light. The deflection angle and phase, and the intensity of the light beam were controlled by the SAW frequency and input power, respectively. The maximum diffraction efficiency achieved was approximately 90% for a 400 MHz SAW. COMSOL simulation and coupling of mode modeling were performed to optimize design parameters and predict device performance.
机译:开发了基于悬浮波导膜的声光(AO)全息显示单元。 AO单元包括一个20微米厚的悬浮晶体128°YX LiNbO膜上的宽带线性调频叉指换能器(IDT),一个在入口附近具有20 µm孔的遮光器以及在出口附近的有源透镜。浮膜的20 µm厚度大大增强了声表面波(SAW)的限制。阻光器安装在AO单元的前面,以提高入射光与波导膜的耦合效率,并在出射区进行测量时消除对光电探测器的干扰。有源透镜垂直地附接到波导侧壁,以无损失地收集衍射束,并通过施加的电压来调制自由空间中的焦距。当从IDT辐射SAW时,沿着波导膜形成了具有周期性折射率的布拉格光栅。光栅使入射光衍射。偏转角和相位以及光束强度分别由SAW频率和输入功率控制。对于400 MHz的声表面波,获得的最大衍射效率约为90%。进行COMSOL仿真和模式建模耦合以优化设计参数并预测设备性能。

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