We discuss the application of spatial light modulators (SLMs) to the field of atom optics. We show that SLMs may be used to generate a wide variety of optical potentials that are useful for the guiding and dipole trapping of atoms. This functionality is demonstrated by the production of a number of different light potentials using a single SLM device. These include Mach-Zender interferometer patterns and the generation of a bottle-beam. We also discuss the current limitations in SLM technology with regard to the generation of both static and dynamically deformed potentials and their use in atom optics
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...
Neutral atoms trapped by laser light are among the most promising candidates for storing and process...
We discuss the application of spatial light modulators (SLMs) to the field of atom optics. We show t...
We discuss the application of spatial light modulators (SLMs) to the field of atom optics. We show t...
We discuss the application of spatial light modulators (SLMs) to the field of atom optics. We show t...
We discuss the application of spatial light modulators (SLMs) to the field of atom optics. We show t...
We propose a novel dipole trapping scheme using spatial light modulators (SLM) for the manipulation ...
We propose a novel dipole trapping scheme using spatial light modulators (SLM) for the manipulation ...
We report on the use of a spatial light modulator to holographically shape the beam profile of a las...
We report on the use of a spatial light modulator to holographically shape the beam profile of a las...
The ability to address and manipulate individual information carriers in a deterministic, coherent, ...
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...
The ability to address and manipulate individual information carriers in a deterministic, coherent, ...
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...
Neutral atoms trapped by laser light are among the most promising candidates for storing and process...
We discuss the application of spatial light modulators (SLMs) to the field of atom optics. We show t...
We discuss the application of spatial light modulators (SLMs) to the field of atom optics. We show t...
We discuss the application of spatial light modulators (SLMs) to the field of atom optics. We show t...
We discuss the application of spatial light modulators (SLMs) to the field of atom optics. We show t...
We propose a novel dipole trapping scheme using spatial light modulators (SLM) for the manipulation ...
We propose a novel dipole trapping scheme using spatial light modulators (SLM) for the manipulation ...
We report on the use of a spatial light modulator to holographically shape the beam profile of a las...
We report on the use of a spatial light modulator to holographically shape the beam profile of a las...
The ability to address and manipulate individual information carriers in a deterministic, coherent, ...
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...
The ability to address and manipulate individual information carriers in a deterministic, coherent, ...
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...
Neutral atoms trapped by laser light are among the most promising candidates for storing and process...