It is well known that the waveguide beam splitter can be used as a source for the quantum entanglement of photons. The analysis of such quantum entanglement is a difficult problem even for monochromatic photons, since the system under study is multiparametric. This paper will show that quantum entanglement can be represented in a simple form not only for monochromatic photons but also for non-monochromatic ones. It will be shown that quantum entanglement for non-monochromatic photons can be very different from monochromatic photons, which can be used to create large quantum entanglement
A beam splitter is a basic linear optical element appearing in many optics experiments and is freque...
Photon subtraction is useful to produce nonclassical states of light addressed to applications in ph...
We theoretically investigate quantum interference of two single photons at a lossy asymmetric beam s...
Usually in quantum optics, the theory of large- and small-scale waveguide beam splitters is the same...
We develop a linear optics network for the generation of photonic entangled states via designing a q...
When two or more degrees of freedom become coupled in a physical system, a number of observables of ...
At the heart of quantum physics lies the principle of superposition, and at the heart of information...
When two or more degrees of freedom become coupled in a physical system, a number of observables of ...
Nonclassicality in the sense of quantum optics is a prerequisite for entanglement in multimode radia...
This thesis investigates properties of quantum states of light while travelling as surface plasmon ...
We discuss the fundamental problems of nonclassical correlations and microscopic entanglement experi...
Entanglement is an essential quantum resource for the acceleration of information processing as well...
One of the main obstacles for the efficient implementation of linear optics quantum computing is the...
We study the operation of linear optics schemes for entanglement distribution based on nonlocal phot...
A beam splitter is a basic linear optical element appearing in many optics experiments and is freque...
A beam splitter is a basic linear optical element appearing in many optics experiments and is freque...
Photon subtraction is useful to produce nonclassical states of light addressed to applications in ph...
We theoretically investigate quantum interference of two single photons at a lossy asymmetric beam s...
Usually in quantum optics, the theory of large- and small-scale waveguide beam splitters is the same...
We develop a linear optics network for the generation of photonic entangled states via designing a q...
When two or more degrees of freedom become coupled in a physical system, a number of observables of ...
At the heart of quantum physics lies the principle of superposition, and at the heart of information...
When two or more degrees of freedom become coupled in a physical system, a number of observables of ...
Nonclassicality in the sense of quantum optics is a prerequisite for entanglement in multimode radia...
This thesis investigates properties of quantum states of light while travelling as surface plasmon ...
We discuss the fundamental problems of nonclassical correlations and microscopic entanglement experi...
Entanglement is an essential quantum resource for the acceleration of information processing as well...
One of the main obstacles for the efficient implementation of linear optics quantum computing is the...
We study the operation of linear optics schemes for entanglement distribution based on nonlocal phot...
A beam splitter is a basic linear optical element appearing in many optics experiments and is freque...
A beam splitter is a basic linear optical element appearing in many optics experiments and is freque...
Photon subtraction is useful to produce nonclassical states of light addressed to applications in ph...
We theoretically investigate quantum interference of two single photons at a lossy asymmetric beam s...