Diffractive beam steering by Digital Micromirror Device enables an efficient way to simultaneously manipulate light both in the spatial and angular domain by spatial and time multiplexing while keeping large area and angular throw product. Long-term stability and susceptibility of beam and image steering rely on how synchronization of ns laser pulse and transition of micromirrors is maintained over time and through variation of device temperature. The long-term performance of the beam steering is evaluated by monitoring diffraction efficiency over 350 hrs. with a 360 Hz repetition rate. Also, diffraction efficiency was monitored while increasing the temperature of the mirror array from 45 to 75 degrees C. Over the period, stable beam steeri...
A digital micromirror device (DMD) has a wide range of applications in holographic display, light fi...
The proposed wavefront sensor design based on a digital micro-mirror array (DMD) promises to give a ...
We measure the motional fluctuations of a micromechanical mirror using a Michelson in-terferometer, ...
MEMS-based spatial modulation device diffractive beam steering enables an efficient way to manipulat...
The sampling rate and angular resolution of diffraction-based beam steering employing a digital micr...
The digital micromirror device (DMD) is an array of tilting micromirrors, capable of high frame rate...
A novel method of beam steering, utilizing a mass-produced Digital Micromirror Device (DMD), enables...
By combining a Micro Electro Mechanical System based resonant mirror and a Digital Micromirror Devic...
Three dimensional laser beam steering of focal position has been demonstrated using a single optical...
Phase light modulator (PLM) by MEMS mirror array operating in a piston-mode motion enables a high-sp...
Micro mirror arrays, such as the Digital Micromirror Device (DMD) from Texas Instruments, are amplit...
The full complex, spatial modulation of light at high frame rates is essential for a variety of appl...
A novel method of beam steering that utilizes a mass-produced Digital Micromirror Device (DMD) enabl...
The recent development of the Micro Electromechanical System (MEMS) Phase Light Modulator (PLM) enab...
Resonant MEMS mirror has been recognized as one of the solid-state laser beam steering (LBS) solutio...
A digital micromirror device (DMD) has a wide range of applications in holographic display, light fi...
The proposed wavefront sensor design based on a digital micro-mirror array (DMD) promises to give a ...
We measure the motional fluctuations of a micromechanical mirror using a Michelson in-terferometer, ...
MEMS-based spatial modulation device diffractive beam steering enables an efficient way to manipulat...
The sampling rate and angular resolution of diffraction-based beam steering employing a digital micr...
The digital micromirror device (DMD) is an array of tilting micromirrors, capable of high frame rate...
A novel method of beam steering, utilizing a mass-produced Digital Micromirror Device (DMD), enables...
By combining a Micro Electro Mechanical System based resonant mirror and a Digital Micromirror Devic...
Three dimensional laser beam steering of focal position has been demonstrated using a single optical...
Phase light modulator (PLM) by MEMS mirror array operating in a piston-mode motion enables a high-sp...
Micro mirror arrays, such as the Digital Micromirror Device (DMD) from Texas Instruments, are amplit...
The full complex, spatial modulation of light at high frame rates is essential for a variety of appl...
A novel method of beam steering that utilizes a mass-produced Digital Micromirror Device (DMD) enabl...
The recent development of the Micro Electromechanical System (MEMS) Phase Light Modulator (PLM) enab...
Resonant MEMS mirror has been recognized as one of the solid-state laser beam steering (LBS) solutio...
A digital micromirror device (DMD) has a wide range of applications in holographic display, light fi...
The proposed wavefront sensor design based on a digital micro-mirror array (DMD) promises to give a ...
We measure the motional fluctuations of a micromechanical mirror using a Michelson in-terferometer, ...