
A review of liquid crystal spatial light modulators: devices and
In particular, liquid-crystal spatial light modulator (LC-SLM) technologies have been regarded as versatile tools for generating arbitrary optical fields and tailoring all degrees of freedom beyond just
High Precision Optical Wavefront Generation Using Liquid Crystal
LC-SLM provides a flexible way to modulate the phase of light with the help of a grayscale pattern loaded on it. Nevertheless, the modulated phase profile is of relatively low accuracy due to the
Phase characterization of a liquid crystal spatial light modulator
Liquid crystal spatial light modulator is a versatile device to be used in different areas of modern optical studies. The traditional Twyman-Green interferometer is used to measure phase modulation
Using the Liquid Crystal Spatial Light Modulators for Control of
1. Introduction Beginning from the mid-1980''s the liquid crystal (LC) spatial light modulators (SLMs) have been used in many optical applications, such as optical data processing, beam shaping, optical
A review of liquid crystal spatial light modulators: devices and
Spatial light modulators, as dynamic flat-panel optical devices, have witnessed rapid development over the past two decades, concomitant with the advancements in micro- and opto-electronic
Fast control of the transverse structure of a light beam using acousto
Fast, reprogrammable control over the transverse structure of light beams plays an essential role in applications such as structured illumination microscopy, optical trapping, and
High Precision Optical Wavefront Generation Using Liquid Crystal
In recent years, due to the rapid developments of liquid crystal display and VLSI technology and the abun-dance of liquid crystal materials, the application of electrically addressable liquid crystal spatial
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