The recent development of the Micro Electromechanical System (MEMS) Phase Light Modulator (PLM) enables fast laser beam steering for lidar applications by displaying a Computer-Generated Hologram (CGH) without employing an iterative CGH calculation algorithm. We discuss the application of MEMS PLM (Texas Instruments PLM) for quasi-continuous laser beam steering by deterministically calculated CGHs. The effect on the diffraction efficiency of PLM non-equally spaced phase levels was quantified. We also address the CGH calculation algorithm and an experimental demonstration that steered and scanned the beam into multiple regions of interest points, enabling beam steering for lidar without sequential raster scanning
By employing Talbot self-imaging, phase modulation depth of a Spatial Light Modulator (SLM) is doubl...
The Texas Instruments Phase Light Modulator (TI PLM) is a new type of MEMS that modulates the phase ...
By combining a Micro Electro Mechanical System based resonant mirror and a Digital Micromirror Devic...
The recent development of the Micro Electromechanical System (MEMS) Phase Light Modulator (PLM) enab...
The recent development of the MEMS Phase Light Modulator (PLM) enables fast laser beam steering for ...
Phase light modulator (PLM) by MEMS mirror array operating in a piston-mode motion enables a high-sp...
Micro-electro mechanical systems (MEMS)-based phase-only spatial light modulators (PLMs) have the po...
MEMS-based spatial modulation device diffractive beam steering enables an efficient way to manipulat...
Real-time, simultaneous, and adaptive beam steering into multiple regions of interest replaces conve...
Resonant MEMS mirror has been recognized as one of the solid-state laser beam steering (LBS) solutio...
Laser beam steering is an essential function for LiDAR. Phase Spatial Light Modulator (SLM) provides...
A one-micron pixel pitch is believed to be required for spatial light modulators (SLMs) to realize h...
A novel method of beam steering, utilizing a mass-produced Digital Micromirror Device (DMD), enables...
Spatial light modulators (SLM) have been widely adopted for applications such as optical data stor...
Controlling the phase of light with a high efficiency and precision is essential for applications in...
By employing Talbot self-imaging, phase modulation depth of a Spatial Light Modulator (SLM) is doubl...
The Texas Instruments Phase Light Modulator (TI PLM) is a new type of MEMS that modulates the phase ...
By combining a Micro Electro Mechanical System based resonant mirror and a Digital Micromirror Devic...
The recent development of the Micro Electromechanical System (MEMS) Phase Light Modulator (PLM) enab...
The recent development of the MEMS Phase Light Modulator (PLM) enables fast laser beam steering for ...
Phase light modulator (PLM) by MEMS mirror array operating in a piston-mode motion enables a high-sp...
Micro-electro mechanical systems (MEMS)-based phase-only spatial light modulators (PLMs) have the po...
MEMS-based spatial modulation device diffractive beam steering enables an efficient way to manipulat...
Real-time, simultaneous, and adaptive beam steering into multiple regions of interest replaces conve...
Resonant MEMS mirror has been recognized as one of the solid-state laser beam steering (LBS) solutio...
Laser beam steering is an essential function for LiDAR. Phase Spatial Light Modulator (SLM) provides...
A one-micron pixel pitch is believed to be required for spatial light modulators (SLMs) to realize h...
A novel method of beam steering, utilizing a mass-produced Digital Micromirror Device (DMD), enables...
Spatial light modulators (SLM) have been widely adopted for applications such as optical data stor...
Controlling the phase of light with a high efficiency and precision is essential for applications in...
By employing Talbot self-imaging, phase modulation depth of a Spatial Light Modulator (SLM) is doubl...
The Texas Instruments Phase Light Modulator (TI PLM) is a new type of MEMS that modulates the phase ...
By combining a Micro Electro Mechanical System based resonant mirror and a Digital Micromirror Devic...