The potential of digital holography for complex manipulation of micron-sized particles with optical tweezers has been clearly demonstrated. By contrast, its use in quantitative experiments has been rather limited, partly due to fluctuations introduced by the spatial light modulator (SLM) that displays the kinoforms. This is an important issue when high temporal or spatial stability is a concern. We have investigated the performance of both an analog-addressed and a digitally-addressed SLM, measuring the phase fluctuations of the modulated beam and evaluating the resulting positional stability of a holographic trap. We show that, despite imparting a more unstable modulation to the wavefront, our digitally-addressed SLM generates optical trap...
We demonstrate the use of a spatial light modulator (SLM) to facilitate the trapping of particles in...
We demonstrate the use of a spatial light modulator (SLM) to facilitate the trapping of particles in...
We discuss and compare three methods to generate holograms for optical tweezers: simple rounding, Fl...
The potential of digital holography for complex manipulation of micron-sized particles with optical ...
Holographic optical trapping (HOT) is a technique for non-invasive dynamic anipulation of multiple m...
We present a holographic optical tweezers system capable of position clamping multiple particles. Mo...
We report on the limitations of using a spatial light modulator (SLM) within optical tweezers to pro...
A major problem with holographic optical tweezers (HOTs) is their incompatibility with laser-based p...
After an intense development of optical tweezers as a biophysical tool during the last decades, quan...
After an intense development of optical tweezers as a biophysical tool during the last decades, quan...
Locating and steering entire ensembles of microscopic objects has become extremely practical with th...
We have developed a holographic optical tweezers system based on diffractive optical elements (DOES)...
We have developed a holographic optical tweezers system based on diffractive optical elements (DOES)...
We demonstrate the use of a spatial light modulator (SLM) to facilitate the trapping of particles in...
We demonstrate the use of a spatial light modulator (SLM) to facilitate the trapping of particles in...
We demonstrate the use of a spatial light modulator (SLM) to facilitate the trapping of particles in...
We demonstrate the use of a spatial light modulator (SLM) to facilitate the trapping of particles in...
We discuss and compare three methods to generate holograms for optical tweezers: simple rounding, Fl...
The potential of digital holography for complex manipulation of micron-sized particles with optical ...
Holographic optical trapping (HOT) is a technique for non-invasive dynamic anipulation of multiple m...
We present a holographic optical tweezers system capable of position clamping multiple particles. Mo...
We report on the limitations of using a spatial light modulator (SLM) within optical tweezers to pro...
A major problem with holographic optical tweezers (HOTs) is their incompatibility with laser-based p...
After an intense development of optical tweezers as a biophysical tool during the last decades, quan...
After an intense development of optical tweezers as a biophysical tool during the last decades, quan...
Locating and steering entire ensembles of microscopic objects has become extremely practical with th...
We have developed a holographic optical tweezers system based on diffractive optical elements (DOES)...
We have developed a holographic optical tweezers system based on diffractive optical elements (DOES)...
We demonstrate the use of a spatial light modulator (SLM) to facilitate the trapping of particles in...
We demonstrate the use of a spatial light modulator (SLM) to facilitate the trapping of particles in...
We demonstrate the use of a spatial light modulator (SLM) to facilitate the trapping of particles in...
We demonstrate the use of a spatial light modulator (SLM) to facilitate the trapping of particles in...
We discuss and compare three methods to generate holograms for optical tweezers: simple rounding, Fl...