Liquid crystal spatial light modulators (LC-SLMs) are devices that can accurately adjust the parameters of beam amplitude, phase, wavefront and polarization. However, due to the limitation of laser damage resistance of component materials, LC-SLMs still have difficulty meeting the application and development needs of a high-average power laser system. Here, we proposed an optically addressable spatial light modulator (OASLM) based on a sapphire substrate. Due to the good thermal conductivity of sapphire, the laser damage resistance of the device was greatly improved. The thermal distribution of OASLM based on the sapphire substrate and the K9 substrate is analyzed by a laser-induced temperature rise model. The experimental results also show...
Recent innovations in the area of liquid crystals have led to the development of passive electro-opt...
Crystalline sapphire (Al2O3) is a hard and transparent material widely used in industry. When applyi...
Facing the recent developments in the area of (quasi) continuous wave lasers towards higher power th...
Spatial light modulators (SLMs) addressed with computer generated holograms (CGHs) can create struct...
This study developed a Liquid Crystal (LC) device that incorporated lasers for machining with output...
AbstractPhase-only spatial light modulators (SLMs) allow to bring adaptive optics and diffractive op...
The spatial light modulator (SLM) is a compact device that enables highly precise control of light p...
There are many important applications for phase-only liquid crystal on Silicon-based spatial light m...
Liquid crystal spatial light modulator technology appropriate for high-resolution wavefront control ...
Fraunhofer IPMS has developed a one-dimensional high-speed spatial light modulator in cooperation wi...
Recent advances in liquid crystal (LC) materials and VLSI technology have enabled the development of...
International audienceA possible way to increase of the information density of optical processing sy...
We report a low-voltage and fast-response polymer network liquid crystal (PNLC) infrared phase modul...
We introduce a concurrent real-time calibration process for diffractive lithography using liquid cry...
We introduce a concurrent real-time calibration process for diffractive lithography using liquid cry...
Recent innovations in the area of liquid crystals have led to the development of passive electro-opt...
Crystalline sapphire (Al2O3) is a hard and transparent material widely used in industry. When applyi...
Facing the recent developments in the area of (quasi) continuous wave lasers towards higher power th...
Spatial light modulators (SLMs) addressed with computer generated holograms (CGHs) can create struct...
This study developed a Liquid Crystal (LC) device that incorporated lasers for machining with output...
AbstractPhase-only spatial light modulators (SLMs) allow to bring adaptive optics and diffractive op...
The spatial light modulator (SLM) is a compact device that enables highly precise control of light p...
There are many important applications for phase-only liquid crystal on Silicon-based spatial light m...
Liquid crystal spatial light modulator technology appropriate for high-resolution wavefront control ...
Fraunhofer IPMS has developed a one-dimensional high-speed spatial light modulator in cooperation wi...
Recent advances in liquid crystal (LC) materials and VLSI technology have enabled the development of...
International audienceA possible way to increase of the information density of optical processing sy...
We report a low-voltage and fast-response polymer network liquid crystal (PNLC) infrared phase modul...
We introduce a concurrent real-time calibration process for diffractive lithography using liquid cry...
We introduce a concurrent real-time calibration process for diffractive lithography using liquid cry...
Recent innovations in the area of liquid crystals have led to the development of passive electro-opt...
Crystalline sapphire (Al2O3) is a hard and transparent material widely used in industry. When applyi...
Facing the recent developments in the area of (quasi) continuous wave lasers towards higher power th...