The ability to spatially control the phase and amplitude of light allows for many exciting applications. In adaptive optics, light fields are modulated to correct for aberrations in the atmosphere. It has recently been shown that by spatially modulating light it is possible to focus and image through and inside opaque materials [1-5]
This is the final version. Available from META Conference via the link in this record. Current spati...
In order to demonstrate and to quantitatively evaluate the wavefront correction capabilities of a sp...
We discuss the development of a digital micromirror based adaptive optical system that corrects for ...
The ability to spatially control the phase and amplitude of light allows for many exciting applicati...
We present a superpixel method for full spatial phase and amplitude control of a light beam using a ...
The Letter proposes a system for the spatial modulation of light in amplitude and phase at kilohertz...
The ongoing progress in microtechnologies in the meantime allows for the fabrication of micromirror ...
In this paper we demonstrate the high flexibility and potential of a microscopic setup using a spati...
Spatial properties of a light field, including its amplitude, polarization and phase distribution, c...
The full complex, spatial modulation of light at high frame rates is essential for a variety of appl...
The devices consist of an array of independently addressable CMOS DRAM cells each controlling a micr...
A wavefront-coded imaging system employing a spatial light modulator (SLM) for the agile implementat...
Focusing through scattering media is a subject of great interest due to its direct impact in the fie...
Adaptive illumination systems are capable of changing their emission pattern in a dynamic and flexib...
We present an overview of the results of our recent research in the field of adaptive optical compon...
This is the final version. Available from META Conference via the link in this record. Current spati...
In order to demonstrate and to quantitatively evaluate the wavefront correction capabilities of a sp...
We discuss the development of a digital micromirror based adaptive optical system that corrects for ...
The ability to spatially control the phase and amplitude of light allows for many exciting applicati...
We present a superpixel method for full spatial phase and amplitude control of a light beam using a ...
The Letter proposes a system for the spatial modulation of light in amplitude and phase at kilohertz...
The ongoing progress in microtechnologies in the meantime allows for the fabrication of micromirror ...
In this paper we demonstrate the high flexibility and potential of a microscopic setup using a spati...
Spatial properties of a light field, including its amplitude, polarization and phase distribution, c...
The full complex, spatial modulation of light at high frame rates is essential for a variety of appl...
The devices consist of an array of independently addressable CMOS DRAM cells each controlling a micr...
A wavefront-coded imaging system employing a spatial light modulator (SLM) for the agile implementat...
Focusing through scattering media is a subject of great interest due to its direct impact in the fie...
Adaptive illumination systems are capable of changing their emission pattern in a dynamic and flexib...
We present an overview of the results of our recent research in the field of adaptive optical compon...
This is the final version. Available from META Conference via the link in this record. Current spati...
In order to demonstrate and to quantitatively evaluate the wavefront correction capabilities of a sp...
We discuss the development of a digital micromirror based adaptive optical system that corrects for ...