The statistics of particles incident on a beam splitter has important applications in quantum protocols such as teleportation or Bell state analysis. We study particle pairs with multiple degrees of freedom in terms of exchange symmetry and show that the particle statistics at a beam splitter can be controlled for suitably chosen states. We propose an experimental test of these ideas using orbital angular momentum entangled photons
Using angular-position-orbital-angular-momentum entangled photons, we study angular two-photon inter...
Both the topics of entanglement and particle statistics have aroused enormous research interest sinc...
This study proposes a procedure for the robust preparation of maximally entangled states of identica...
The statistics of particles incident on a beam splitter has important applications in quantum protoc...
We report experimental studies of quantum interference of multiphoton states impinging on a two-port...
Quantum interference between identical single particles reveals the intrinsic quantum statistic natu...
Quantum mechanics, optics and indeed any wave theory exhibits the phenomenon of interference. In thi...
Quantum interference of correlated particles is a fundamental quantum phenomenon which carries signa...
We show how robust statistical features of a many-particle quantum state's two-point correlations af...
We demonstrate a source for correlated pairs of atoms characterized by two opposite momenta and two ...
Entanglement and interference are both hallmark effects of quantum physics. Particularly rich dynami...
Two-photon interference, known as the Hong-Ou-Mandel effect, has colossal implications for quantum t...
A double-slit experiment with entangled photons is theoretically analyzed. It is shown that, under s...
Identical two-particle interferometry provides a scenario where interference and exchange ...
Quantum mechanics defines two classes of particles-bosons and fermions-whose exchange statistics fun...
Using angular-position-orbital-angular-momentum entangled photons, we study angular two-photon inter...
Both the topics of entanglement and particle statistics have aroused enormous research interest sinc...
This study proposes a procedure for the robust preparation of maximally entangled states of identica...
The statistics of particles incident on a beam splitter has important applications in quantum protoc...
We report experimental studies of quantum interference of multiphoton states impinging on a two-port...
Quantum interference between identical single particles reveals the intrinsic quantum statistic natu...
Quantum mechanics, optics and indeed any wave theory exhibits the phenomenon of interference. In thi...
Quantum interference of correlated particles is a fundamental quantum phenomenon which carries signa...
We show how robust statistical features of a many-particle quantum state's two-point correlations af...
We demonstrate a source for correlated pairs of atoms characterized by two opposite momenta and two ...
Entanglement and interference are both hallmark effects of quantum physics. Particularly rich dynami...
Two-photon interference, known as the Hong-Ou-Mandel effect, has colossal implications for quantum t...
A double-slit experiment with entangled photons is theoretically analyzed. It is shown that, under s...
Identical two-particle interferometry provides a scenario where interference and exchange ...
Quantum mechanics defines two classes of particles-bosons and fermions-whose exchange statistics fun...
Using angular-position-orbital-angular-momentum entangled photons, we study angular two-photon inter...
Both the topics of entanglement and particle statistics have aroused enormous research interest sinc...
This study proposes a procedure for the robust preparation of maximally entangled states of identica...