Modern x-ray light sources promise access to structure and dynamics of matter in largely unexplored spectral regions. However, the desired information is encoded in the light intensity and phase, whereas detectors register only the intensity. This phase problem is ubiquitous in crystallography and imaging, and impedes the exploration of quantum effects at x-ray energies. Here, we demonstrate phase-sensitive measurements characterizing the quantum state of a nuclear two-level system at hard x-ray energies. The nuclei are initially prepared in a superposition state. Subsequently, the relative phase of this superposition is interferometrically reconstructed from the emitted x-rays. Our results form a first step towards x-ray quantum state tomo...
With the advent of high-brilliance, accelerator-driven light sources such as modern synchrotron radi...
Quantum interferences offer the potential for improving the effective resolution wavelength of many ...
We propose a quantum diffraction imaging technique whereby one photon of an entangled pair is diffra...
Modern x-ray light sources promise access to structure and dynamics of matter in largely unexplored ...
Modern x-ray light sources promise access to structure and dynamics of matter in largely unexplored ...
The time-dependent phase change of X-rays after transmission through a sample has been determined ex...
Multiphoton entangled states such as “N00N states” have attracted a lot of attention because of thei...
Ultrafast and precise control of quantum systems at x-ray energies involves photons with oscillation...
The sensitivity in optical interferometry is strongly affected by losses during the signal propagati...
The sensitivity in optical interferometry is strongly affected by losses during the signal propagati...
International audienceWe apply a spectrally-resolved electron interferometry technique to the measur...
This thesis describes quantum optical experiments with x-rays with the aim of reaching the strong-co...
We theoretically analyze the Bragg spectroscopic interferometer of two spatially separated atomic Bo...
Geometric phase has been proposed as one of the promising methodologies to perform fault tolerant qu...
We introduce an analytical phase-reconstruction principle that retrieves atomic scale motion via tim...
With the advent of high-brilliance, accelerator-driven light sources such as modern synchrotron radi...
Quantum interferences offer the potential for improving the effective resolution wavelength of many ...
We propose a quantum diffraction imaging technique whereby one photon of an entangled pair is diffra...
Modern x-ray light sources promise access to structure and dynamics of matter in largely unexplored ...
Modern x-ray light sources promise access to structure and dynamics of matter in largely unexplored ...
The time-dependent phase change of X-rays after transmission through a sample has been determined ex...
Multiphoton entangled states such as “N00N states” have attracted a lot of attention because of thei...
Ultrafast and precise control of quantum systems at x-ray energies involves photons with oscillation...
The sensitivity in optical interferometry is strongly affected by losses during the signal propagati...
The sensitivity in optical interferometry is strongly affected by losses during the signal propagati...
International audienceWe apply a spectrally-resolved electron interferometry technique to the measur...
This thesis describes quantum optical experiments with x-rays with the aim of reaching the strong-co...
We theoretically analyze the Bragg spectroscopic interferometer of two spatially separated atomic Bo...
Geometric phase has been proposed as one of the promising methodologies to perform fault tolerant qu...
We introduce an analytical phase-reconstruction principle that retrieves atomic scale motion via tim...
With the advent of high-brilliance, accelerator-driven light sources such as modern synchrotron radi...
Quantum interferences offer the potential for improving the effective resolution wavelength of many ...
We propose a quantum diffraction imaging technique whereby one photon of an entangled pair is diffra...