We provide an analytic propagator for non-Hermitian dimers showing linear gain or losses in the quantum regime. In particular, we focus on experimentally feasible realizations of the PT -symmetric dimer and provide their mean photon number and second order two-point correlation. We study the propagation of vacuum, single photon spatially-separable, and two-photon spatially-entangled states. We show that each configuration produces a particular signature that might signal their possible uses as photon switches, semi-classical intensity-tunable sources, or spatially entangled sources to mention a few possible applications
By calculating correlation spectra of the output fields, we show theoretically that two evanescently...
We study the teleportation of non-Gaussian, non-classical Schrödinger-cat states of light. We use t...
It is well known that the waveguide beam splitter can be used as a source for the quantum entangleme...
Optics has proved a fertile ground for the experimental simulation of quantum mechanics. Most recent...
We study the operation of linear optics schemes for entanglement distribution based on nonlocal phot...
In this Letter, we show that photonic dimers, the quantum mechanical bound states of two photons, en...
Abstract. We study the propagation of non-classical light through arrays of coupled linear photonic ...
We develop a linear optics network for the generation of photonic entangled states via designing a q...
From quantum computation to quantum key distribution, many quantum-enhanced applications rely on the...
A mean position state based on the gauge invariant transverse vector potential is used to convert si...
We discuss an approach to encoding qubits in the spatial distribution of single photons and entangle...
We develop the theory of light propagation under the conditions of electromagnetically induced trans...
Optical multi-mode systems provide large scale Hilbert spaces that can be accessed and controlled us...
We consider the open two-site Bose–Hubbard dimer, a well-known quantum mechanical model that has bee...
We demonstrate experimental generation of spatially entangled photon pairs by spontaneous parametric...
By calculating correlation spectra of the output fields, we show theoretically that two evanescently...
We study the teleportation of non-Gaussian, non-classical Schrödinger-cat states of light. We use t...
It is well known that the waveguide beam splitter can be used as a source for the quantum entangleme...
Optics has proved a fertile ground for the experimental simulation of quantum mechanics. Most recent...
We study the operation of linear optics schemes for entanglement distribution based on nonlocal phot...
In this Letter, we show that photonic dimers, the quantum mechanical bound states of two photons, en...
Abstract. We study the propagation of non-classical light through arrays of coupled linear photonic ...
We develop a linear optics network for the generation of photonic entangled states via designing a q...
From quantum computation to quantum key distribution, many quantum-enhanced applications rely on the...
A mean position state based on the gauge invariant transverse vector potential is used to convert si...
We discuss an approach to encoding qubits in the spatial distribution of single photons and entangle...
We develop the theory of light propagation under the conditions of electromagnetically induced trans...
Optical multi-mode systems provide large scale Hilbert spaces that can be accessed and controlled us...
We consider the open two-site Bose–Hubbard dimer, a well-known quantum mechanical model that has bee...
We demonstrate experimental generation of spatially entangled photon pairs by spontaneous parametric...
By calculating correlation spectra of the output fields, we show theoretically that two evanescently...
We study the teleportation of non-Gaussian, non-classical Schrödinger-cat states of light. We use t...
It is well known that the waveguide beam splitter can be used as a source for the quantum entangleme...