It is shown that coherent superpositions of two oppositely polarized n-photon states can be created by postselecting the transmission of n independently generated photons into a single-mode transmission line. It is thus possible to generate highly nonclassical n-photon polarization states using only the bunching effects associated with the bosonic nature of photons. The effects of mode-matching errors are discussed and the possibility of creating n-photon entanglement by redistributing the photons into n separate modes is considered
Multiphoton entanglement is the basis of many quantum communication schemes, quantum cryptographic p...
Quantum mechanics allows us to use nonclassical states of light to make measurements with a greater ...
Nonclassicality in the sense of quantum optics is a prerequisite for entanglement in multimode radia...
It is shown that coherent superpositions of two oppositely polarized n-photon states can be created ...
International audienceWe propose a mechanism for producing N-photon states on demand leaking from a ...
Entanglement is a key resource in many quantum information schemes andin the last years the research...
Compared to classical light sources, quantum sources based on N00N states consisting of N photons ac...
We present an experimental scheme based on spontaneous parametric down-conversion to produce multipl...
We propose a method of generating maximally-polarization-entangled states by type-II spontaneous par...
We propose a method to generate nonclassical states of light in multimode microwave cavities. Our ap...
Polarization has been used extensively in quantum information processing, and quantum entanglement i...
We show how to prepare four-photon polarization entangled states based on some Einstein-Po...
We experimentally demonstrate polarization entanglement for squeezed vacuum pulses containing more t...
We present a single-photon source based on the stimulated four-wave mixing process with adjustable ...
Photonic implementations of quantum teleportation transfer the quantum state of one photon onto anot...
Multiphoton entanglement is the basis of many quantum communication schemes, quantum cryptographic p...
Quantum mechanics allows us to use nonclassical states of light to make measurements with a greater ...
Nonclassicality in the sense of quantum optics is a prerequisite for entanglement in multimode radia...
It is shown that coherent superpositions of two oppositely polarized n-photon states can be created ...
International audienceWe propose a mechanism for producing N-photon states on demand leaking from a ...
Entanglement is a key resource in many quantum information schemes andin the last years the research...
Compared to classical light sources, quantum sources based on N00N states consisting of N photons ac...
We present an experimental scheme based on spontaneous parametric down-conversion to produce multipl...
We propose a method of generating maximally-polarization-entangled states by type-II spontaneous par...
We propose a method to generate nonclassical states of light in multimode microwave cavities. Our ap...
Polarization has been used extensively in quantum information processing, and quantum entanglement i...
We show how to prepare four-photon polarization entangled states based on some Einstein-Po...
We experimentally demonstrate polarization entanglement for squeezed vacuum pulses containing more t...
We present a single-photon source based on the stimulated four-wave mixing process with adjustable ...
Photonic implementations of quantum teleportation transfer the quantum state of one photon onto anot...
Multiphoton entanglement is the basis of many quantum communication schemes, quantum cryptographic p...
Quantum mechanics allows us to use nonclassical states of light to make measurements with a greater ...
Nonclassicality in the sense of quantum optics is a prerequisite for entanglement in multimode radia...