We demonstrate the temporal Talbot effect for trapped matter waves using ultracold atoms in an optical lattice. We investigate the phase evolution of an array of essentially non-interacting matter waves and observe matter-wave collapse and revival in the form of a Talbot interference pattern. By using long expansion times, we image momentum space with sub-recoil resolution, allowing us to observe fractional Talbot fringes up to tenth order
The Talbot effect (or the self-imaging effect) can be observed for a periodic object with a pitch la...
We study the nonequilibrium dynamics of cold atoms held in an optical lattice subjected to a periodi...
The electromagnetically induced Talbot effect (EITE) offers a nondestructive and lensless way to ima...
We report the experimental observation of two-dimensional Talbot effect when a resonance plane wave ...
We study the diffraction phase of different orders via the Dyson expansion series, for ultracold ato...
We investigate laser-cooled atoms periodically driven by pulsed standing waves of light tuned close ...
We demonstrate, experimentally and theoretically, a Talbot effect for hybrid light-matter waves - ex...
We study matter-wave scattering from an ultracold, many-body atomic system trapped in an optical lat...
We discuss the concept of an all-optical and ionizing matter-wave interferometer in the time domain....
Nearly two centuries ago Talbot first observed the fascinating effect whereby light propagating thro...
We present a theoretical framework to describe the effects of decoherence on matter waves in Talbot-...
By modulating transmission function of a weak probe field via a strong control standing wave, an ele...
Light is extensively used to steer the motion of atoms in free space, enabling cooling and trapping ...
A Bose-Einstein condensate represents the most 'classical' form of a matter wave, just as an optical...
Interference of matter waves is at the heart of quantum physics and has been observed for a wide ran...
The Talbot effect (or the self-imaging effect) can be observed for a periodic object with a pitch la...
We study the nonequilibrium dynamics of cold atoms held in an optical lattice subjected to a periodi...
The electromagnetically induced Talbot effect (EITE) offers a nondestructive and lensless way to ima...
We report the experimental observation of two-dimensional Talbot effect when a resonance plane wave ...
We study the diffraction phase of different orders via the Dyson expansion series, for ultracold ato...
We investigate laser-cooled atoms periodically driven by pulsed standing waves of light tuned close ...
We demonstrate, experimentally and theoretically, a Talbot effect for hybrid light-matter waves - ex...
We study matter-wave scattering from an ultracold, many-body atomic system trapped in an optical lat...
We discuss the concept of an all-optical and ionizing matter-wave interferometer in the time domain....
Nearly two centuries ago Talbot first observed the fascinating effect whereby light propagating thro...
We present a theoretical framework to describe the effects of decoherence on matter waves in Talbot-...
By modulating transmission function of a weak probe field via a strong control standing wave, an ele...
Light is extensively used to steer the motion of atoms in free space, enabling cooling and trapping ...
A Bose-Einstein condensate represents the most 'classical' form of a matter wave, just as an optical...
Interference of matter waves is at the heart of quantum physics and has been observed for a wide ran...
The Talbot effect (or the self-imaging effect) can be observed for a periodic object with a pitch la...
We study the nonequilibrium dynamics of cold atoms held in an optical lattice subjected to a periodi...
The electromagnetically induced Talbot effect (EITE) offers a nondestructive and lensless way to ima...