We are developing a linear array of micromirrors designed for optical, femtosecond laser pulse shaping. It is a bulkmicromachined device, capable of retarding or diminishing certain laser frequencies in order to perform phase and amplitude modulation within a frequency band spanning the UV to the near-infrared. The design consists of a linear array of mirrors fixed on either side by springs. They feature two degrees of freedom: Out-of-plane motion for phase shifting and rotational motion for binary amplitude modulation, both realized using vertical comb drives. The first applications will include femtosecond discrimination experiments on biomolecules
International audienceWe present programmable spatial beam-shaping of 100-kHz, 4-µJ amplified femtos...
The digital micromirror device (DMD) is an array of tilting micromirrors, capable of high frame rate...
Spectral phase, amplitude, and spatial modulation from ultraviolet to infrared with a reflective MEM...
We are fabricating a bulk-micromachined micromirror device for laser pulse shaping applications on f...
We demonstrate the capabilities of a new optical microelectromechanical systems device that we speci...
We present an in-detail description of the design, simulation, fabrication, and packaging of a linea...
The use of a novel micro mirror array, which is based on a micro electro mechanical system (MEMS), a...
An ultrafast spectrum programmable femtosecond laser may enhance the performance of a wide variety o...
We propose a versatile set-up dedicated to programmable beam shaping of femtosecond pulses in a foca...
We describe the implementation and characterization of a micro-mirror-array set-up based on Micro-El...
Fraunhofer IPMS has developed a linear micro mirror array (ASLM8k) for use as fast intensity modulat...
We present a dynamic laser beam shaper than can generate smooth flat top and gaussian intensity prof...
We describe the performance of a reflective pulse-shaper based on a Micro-ElectroMechanical System (...
The full complex, spatial modulation of light at high frame rates is essential for a variety of appl...
The central objective of this thesis is to design a system that allows control over the spatial inte...
International audienceWe present programmable spatial beam-shaping of 100-kHz, 4-µJ amplified femtos...
The digital micromirror device (DMD) is an array of tilting micromirrors, capable of high frame rate...
Spectral phase, amplitude, and spatial modulation from ultraviolet to infrared with a reflective MEM...
We are fabricating a bulk-micromachined micromirror device for laser pulse shaping applications on f...
We demonstrate the capabilities of a new optical microelectromechanical systems device that we speci...
We present an in-detail description of the design, simulation, fabrication, and packaging of a linea...
The use of a novel micro mirror array, which is based on a micro electro mechanical system (MEMS), a...
An ultrafast spectrum programmable femtosecond laser may enhance the performance of a wide variety o...
We propose a versatile set-up dedicated to programmable beam shaping of femtosecond pulses in a foca...
We describe the implementation and characterization of a micro-mirror-array set-up based on Micro-El...
Fraunhofer IPMS has developed a linear micro mirror array (ASLM8k) for use as fast intensity modulat...
We present a dynamic laser beam shaper than can generate smooth flat top and gaussian intensity prof...
We describe the performance of a reflective pulse-shaper based on a Micro-ElectroMechanical System (...
The full complex, spatial modulation of light at high frame rates is essential for a variety of appl...
The central objective of this thesis is to design a system that allows control over the spatial inte...
International audienceWe present programmable spatial beam-shaping of 100-kHz, 4-µJ amplified femtos...
The digital micromirror device (DMD) is an array of tilting micromirrors, capable of high frame rate...
Spectral phase, amplitude, and spatial modulation from ultraviolet to infrared with a reflective MEM...