Over the years, quite a few proposals have been put forward by various groups to exploit the Stern-Gerlach effect to create stable macroscopic spatial superpositions between micron-sized neutral test masses over appreciably long time scales. One such proposal put forward by Bose et al. and co-workers in 2017 uses this idea to show that two masses cannot be gravitationally entangled if not for the presence of a quantum coherent mediator. A key aspect of this approach involves the measure of the visibility of the SG-interferometer, a quantity that provides an estimate of the degree of spin coherence that is conserved over the total interferometric time after the wave-packets are combined in both, position and momentum space. A successful impl...
Mach-Zehnder interferometry based on mixing the coherent and the squeezed vacuum states of light has...
This paper investigates the decoherence effect resulting from the interaction of squeezed gravitatio...
We show that the generation of entanglement of two heavily macroscopic mirrors with masses of up to ...
We discuss the coherent splitting and recombining of a nanoparticle in a mesoscopic "closed-loop" St...
The Stern-Gerlach effect, found a century ago, has become a paradigm of quantum mechanics. Unexpecte...
The Stern-Gerlach effect, found a century ago, has become a paradigm of quantum mechanics. Unexpecte...
The Stern-Gerlach effect, found a century ago, has become a paradigm of quantum mechanics. Unexpecte...
We derive a phase-entanglement criterion for two bosonic modes that is immune to number fluctuations...
We derive a phase-entanglement criterion for two bosonic modes that is immune to number fluctuations...
Abstract. Coherent states provide an appealing method to reconstruct efficiently the pure state of a...
A recently proposed experimental protocol for quantum gravity induced entanglement of masses (QGEM) ...
Space offers exciting opportunities to test the foundations of quantum physics using macroscopic qua...
The fundamental quantum interferometry bound limits the sensitivity of an interferometer for a given...
Long-baseline laser-interferometer gravitational-wave detectors are operating at a factor of 10 (in ...
We address high-precision measurements by active and passive interferometric schemes based on Gaussi...
Mach-Zehnder interferometry based on mixing the coherent and the squeezed vacuum states of light has...
This paper investigates the decoherence effect resulting from the interaction of squeezed gravitatio...
We show that the generation of entanglement of two heavily macroscopic mirrors with masses of up to ...
We discuss the coherent splitting and recombining of a nanoparticle in a mesoscopic "closed-loop" St...
The Stern-Gerlach effect, found a century ago, has become a paradigm of quantum mechanics. Unexpecte...
The Stern-Gerlach effect, found a century ago, has become a paradigm of quantum mechanics. Unexpecte...
The Stern-Gerlach effect, found a century ago, has become a paradigm of quantum mechanics. Unexpecte...
We derive a phase-entanglement criterion for two bosonic modes that is immune to number fluctuations...
We derive a phase-entanglement criterion for two bosonic modes that is immune to number fluctuations...
Abstract. Coherent states provide an appealing method to reconstruct efficiently the pure state of a...
A recently proposed experimental protocol for quantum gravity induced entanglement of masses (QGEM) ...
Space offers exciting opportunities to test the foundations of quantum physics using macroscopic qua...
The fundamental quantum interferometry bound limits the sensitivity of an interferometer for a given...
Long-baseline laser-interferometer gravitational-wave detectors are operating at a factor of 10 (in ...
We address high-precision measurements by active and passive interferometric schemes based on Gaussi...
Mach-Zehnder interferometry based on mixing the coherent and the squeezed vacuum states of light has...
This paper investigates the decoherence effect resulting from the interaction of squeezed gravitatio...
We show that the generation of entanglement of two heavily macroscopic mirrors with masses of up to ...