Many phenomena and fundamental predictions, ranging from Hawking radiation to the early evolution of the Universe rely on the interplay between quantum mechanics and gravity or more generally, quantum mechanics in curved spacetimes. However, our understanding is hindered by the lack of experiments that actually allow us to probe quantum mechanics in curved spacetime in a repeatable and accessible way. Here we propose an experimental scheme for a photon that is prepared in a path superposition state across two rotating Sagnac interferometers that have different diameters and thus represent a superposition of two different spacetimes. We predict the generation of genuine entanglement even at low rotation frequencies and show how these effects...
Gravitational waves, as predicted by Einstein’s general relativity theory, appear as ripples in the ...
Entanglement is one of the most peculiar features consequent upon quantum mechanics. It is at-tribut...
Optical interferometers may not require a phase-stable optical link between the stations if instead ...
Many phenomena and fundamental predictions, ranging from Hawking radiation to the early evolution of...
Many phenomena and fundamental predictions, ranging from Hawking radiation to the early evolution of...
In this thesis, we investigate how motion through a curved spacetime background affects a system's d...
Although quantum physics is well understood in inertial reference frames (flat spacetime), a current...
Photon interference and bunching are widely studied quantum effects that have also been proposed for...
Photon interference and bunching are widely studied quantum effects that have also been proposed for...
We propose an experiment in which an entangled pair of optical pulses are propagated through non-uni...
The unification of the theory of relativity and quantum mechanics is a long-standing challenge in co...
The experiment involving the entanglement of two massive particles through gravitational fields has ...
We propose an experiment to test the effects of gravity and acceleration on quantum entanglement in ...
Gravitational waves, as predicted by Einstein's general relativity theory, appear as ripples in the ...
We propose an experiment in which an entangled pair of optical pulses follow different paths through...
Gravitational waves, as predicted by Einstein’s general relativity theory, appear as ripples in the ...
Entanglement is one of the most peculiar features consequent upon quantum mechanics. It is at-tribut...
Optical interferometers may not require a phase-stable optical link between the stations if instead ...
Many phenomena and fundamental predictions, ranging from Hawking radiation to the early evolution of...
Many phenomena and fundamental predictions, ranging from Hawking radiation to the early evolution of...
In this thesis, we investigate how motion through a curved spacetime background affects a system's d...
Although quantum physics is well understood in inertial reference frames (flat spacetime), a current...
Photon interference and bunching are widely studied quantum effects that have also been proposed for...
Photon interference and bunching are widely studied quantum effects that have also been proposed for...
We propose an experiment in which an entangled pair of optical pulses are propagated through non-uni...
The unification of the theory of relativity and quantum mechanics is a long-standing challenge in co...
The experiment involving the entanglement of two massive particles through gravitational fields has ...
We propose an experiment to test the effects of gravity and acceleration on quantum entanglement in ...
Gravitational waves, as predicted by Einstein's general relativity theory, appear as ripples in the ...
We propose an experiment in which an entangled pair of optical pulses follow different paths through...
Gravitational waves, as predicted by Einstein’s general relativity theory, appear as ripples in the ...
Entanglement is one of the most peculiar features consequent upon quantum mechanics. It is at-tribut...
Optical interferometers may not require a phase-stable optical link between the stations if instead ...