Using an acousto-optic modulator as a fast spatial light modulator

Abstract

High-speed spatial light modulators (SLM) are crucial components for free-space communication and structured illumination imaging. Current approaches for dynamical spatial mode generation, such as liquid crystal SLMs or digital micromirror devices, are limited to a maximum pattern refresh rate of 10 kHz and have a low damage threshold. We demonstrate that arbitrary spatial profiles in a laser pulse can be generated by mapping the temporal radio-frequency (RF) waveform sent to an acousto-optic modulator (AOM) onto the optical field. We find that the fidelity of the SLM performance can be improved through numerical optimization of the RF waveform to overcome the nonlinear effect of AOM. An AOM can thus be used as a 1-dimensional SLM, a technique we call acousto-optic spatial light modulator (AO-SLM), which has 50 µm pixel pitch, over 1 MHz update rate, and high damage threshold. We simulate the application of AO-SLM to single-pixel imaging, which can reconstruct a 32×32 pixel complex object at a rate of 11.6 kHz with 98% fidelity.

Document Details

Document Type
Pub Defense Publication
Publication Date
Jan 05, 2023
Source ID
10.1364/oe.471910

Entities

People

  • Boris Braverman
  • Robert W. Boyd
  • Xialin Liu

Organizations

  • Canada Research Chair
  • Chinese Academy of Sciences
  • Natural Sciences and Engineering Research Council
  • Office of Naval Research
  • University of Ottawa
  • University of Rochester

Tags

Fields of Study

  • Physics

Readers

  • Image Processing and Computer Vision.
  • Maritime Combat Support and Expeditionary Logistics.
  • Pulsed Power and Plasma Physics.

Technology Areas

  • Directed Energy
  • Space