In recent years, matter-wave interferometry has attracted growing attention due to its unique suitability for high-precision measurements and the study of fundamental aspects of quantum theory. Diffraction and interference of matter waves can be observed not only at a spatial aperture (such as a screen edge, slit, or grating), but also at a time-domain aperture (such as an absorbing barrier, or “shutter,” that is being periodically switched on and off). The wave phenomenon of the latter type is commonly referred to as “diffraction in time.” Here, we introduce a versatile, exactly solvable model of diffraction in time. It describes time evolution of an arbitrary initial quantum state in the presence of a time-dependent absorbing barrier, gov...
Quantum mechanics has fundamentally changed the way scientists think about the world. Quantum mechan...
By using optical models based on the theory of partially coherent light, and the quantum decoherence...
Double-slit diffraction is a corner stone of quantum mechanics. It illustrates key features of quant...
In recent years, matter-wave interferometry has attracted growing attention due to its unique suitab...
Diffraction in time (DIT) is a fundamental phenomenon in quantum dynamics due to time-dependent obst...
Diffraction in time manifests itself as the appearance of probability-density fringes when a matter ...
The phenomenon of wave packet diffraction in space and time is described. It consists in a diffracti...
Young's double-slit experiment [1] requires two waves produced simultaneously at two different point...
Moshinsky's work on diffraction in time is recognized as a particular case of monoenergetic, quantum...
We introduce diffraction-based interaction-free measurements. In contrast with previous work where a...
We have observed the diffraction of a Bose-Einstein condensate of rubidium atoms on a vibrating mirr...
We study the quantum slit diffraction problem in three dimensions. In the treatment of diffraction o...
This article was supported by the German Research Foundation (DFG) and the Open Access Publication F...
Even 100 years after its introduction by Louis de Broglie, the wave-nature of matter is often regard...
Decoherence is the main process behind the quantum to classical transition. It is a purely quantum m...
Quantum mechanics has fundamentally changed the way scientists think about the world. Quantum mechan...
By using optical models based on the theory of partially coherent light, and the quantum decoherence...
Double-slit diffraction is a corner stone of quantum mechanics. It illustrates key features of quant...
In recent years, matter-wave interferometry has attracted growing attention due to its unique suitab...
Diffraction in time (DIT) is a fundamental phenomenon in quantum dynamics due to time-dependent obst...
Diffraction in time manifests itself as the appearance of probability-density fringes when a matter ...
The phenomenon of wave packet diffraction in space and time is described. It consists in a diffracti...
Young's double-slit experiment [1] requires two waves produced simultaneously at two different point...
Moshinsky's work on diffraction in time is recognized as a particular case of monoenergetic, quantum...
We introduce diffraction-based interaction-free measurements. In contrast with previous work where a...
We have observed the diffraction of a Bose-Einstein condensate of rubidium atoms on a vibrating mirr...
We study the quantum slit diffraction problem in three dimensions. In the treatment of diffraction o...
This article was supported by the German Research Foundation (DFG) and the Open Access Publication F...
Even 100 years after its introduction by Louis de Broglie, the wave-nature of matter is often regard...
Decoherence is the main process behind the quantum to classical transition. It is a purely quantum m...
Quantum mechanics has fundamentally changed the way scientists think about the world. Quantum mechan...
By using optical models based on the theory of partially coherent light, and the quantum decoherence...
Double-slit diffraction is a corner stone of quantum mechanics. It illustrates key features of quant...