Semitransparent mirrors are standard elements in light optics for splitting light beams or creating two versions of the same image. Such mirrors do not exist in electron optics, although they could be beneficial in existing techniques such as electron interferometry and holography and could enable alternative electron imaging and spectroscopy techniques. We propose a design for an electron beam splitter using the concept of quantum interaction-free measurement (IFM). The design combines an electron resonator with a weak phase grating. Fast switching gates allow electrons to enter and exit the resonator. While in the resonator, the phase grating transfers intensity from the direct beam into one of the weakly diffracted beams at each pass. To...
Quantum mechanics has fundamentally changed the way scientists think about the world. Quantum mechan...
Imaging biomolecules in their natural state at an atomic scale resolution is crucial to the un- ders...
Light transport in opaque scattering media mixes the light across the large number of modes in the s...
Semitransparent mirrors are standard elements in light optics for splitting light beams or creating ...
One of the astounding consequences of quantum mechanics is that it allows the detection of a target ...
We report the experimental demonstration of efficient interaction of multi-kilo-electron-volt herald...
We theoretically investigate quantum interference of two single photons at a lossy asymmetric beam s...
Here, we experimentally demonstrate interaction-free measurements with electrons using a novel elect...
The familiar input-output relations for an optical beam splitter are generalized to allow for linear...
We consider a single electron amplitude splitting interference experiment with respect to the possib...
We discuss the implementation of a beam splitter for electron waves in a quantum Hall bilayer. Our a...
International audienceGraphene is a very promising test bed for the field of electron quantum optics...
Quantum mechanics has fundamentally changed the way scientists think about the world. Quantum mechan...
The ability to imprint a phase pattern onto a coherent electron wave would find many applications in...
The subject of this work is the study of Quantum Non-Demolition (QND) Measurements - in Optics. We s...
Quantum mechanics has fundamentally changed the way scientists think about the world. Quantum mechan...
Imaging biomolecules in their natural state at an atomic scale resolution is crucial to the un- ders...
Light transport in opaque scattering media mixes the light across the large number of modes in the s...
Semitransparent mirrors are standard elements in light optics for splitting light beams or creating ...
One of the astounding consequences of quantum mechanics is that it allows the detection of a target ...
We report the experimental demonstration of efficient interaction of multi-kilo-electron-volt herald...
We theoretically investigate quantum interference of two single photons at a lossy asymmetric beam s...
Here, we experimentally demonstrate interaction-free measurements with electrons using a novel elect...
The familiar input-output relations for an optical beam splitter are generalized to allow for linear...
We consider a single electron amplitude splitting interference experiment with respect to the possib...
We discuss the implementation of a beam splitter for electron waves in a quantum Hall bilayer. Our a...
International audienceGraphene is a very promising test bed for the field of electron quantum optics...
Quantum mechanics has fundamentally changed the way scientists think about the world. Quantum mechan...
The ability to imprint a phase pattern onto a coherent electron wave would find many applications in...
The subject of this work is the study of Quantum Non-Demolition (QND) Measurements - in Optics. We s...
Quantum mechanics has fundamentally changed the way scientists think about the world. Quantum mechan...
Imaging biomolecules in their natural state at an atomic scale resolution is crucial to the un- ders...
Light transport in opaque scattering media mixes the light across the large number of modes in the s...