Using angular position–orbital angular momentum entangled photons, we propose an experiment to generate maximally entangled states in D-dimensional quantum systems, the so called qudits, by exploiting correlations of parametric down-converted photons. Angular diffraction masks containing N angular slits in the arms of each twin photon define a qudit space of dimension N2, spanned by the alternative pathways of the photons. Numerical results for N angular slits with N = 2, 4, 5, 10 are reported. We discuss relevant experimental parameters for an experimental implementation of the proposed scheme using Spatial Light Modulators (SLMs), and twin-photons produced by Spontaneous Parametric Down Conversion (SPDC). The entanglement of the qudit sta...
Entanglement is an invaluable resource to various quantum communication, metrology, and computing pr...
Since its discovery, quantum entanglement has challenged some of the best established views of the w...
We present a method for preparing arbitrary pure states of spatial qudits, namely, D-dimensional (D ...
International audienceWe propose a method for the generation of entangled photonic states in high di...
Using angular-position-orbital-angular-momentum entangled photons, we study angular two-photon inter...
We show the propagation of entangled states of high-dimensional quantum systems. The qudits states w...
Any practical experiment utilizing the innate D-dimensional entanglement of the orbital angular mome...
Orbital angular momentum (OAM) is one of the most recently discovered properties of light, and it is...
We demonstrate a simple experimental method for creating entangled qudits. Using transverse-momentum...
We propose an experimental scheme to generate, in a heralded fashion, arbitrary quantum superpositio...
The spatial modes of photons are one realization of a QuDit, a quantum system that is described in a...
In a recent letter [Phys. Rev. Lett. 94, 100501 (2005)], we presented a scheme for generating pure e...
The bandwidth of any communication system, classical or quantum, is limited by the number of orthogo...
Empirical thesis.Bibliography: pages 137-145.1. Introduction -- 2. Spontaneous parametric down conve...
Advancing quantum information processing is predicated on the preparation of ever-larger multiqubit ...
Entanglement is an invaluable resource to various quantum communication, metrology, and computing pr...
Since its discovery, quantum entanglement has challenged some of the best established views of the w...
We present a method for preparing arbitrary pure states of spatial qudits, namely, D-dimensional (D ...
International audienceWe propose a method for the generation of entangled photonic states in high di...
Using angular-position-orbital-angular-momentum entangled photons, we study angular two-photon inter...
We show the propagation of entangled states of high-dimensional quantum systems. The qudits states w...
Any practical experiment utilizing the innate D-dimensional entanglement of the orbital angular mome...
Orbital angular momentum (OAM) is one of the most recently discovered properties of light, and it is...
We demonstrate a simple experimental method for creating entangled qudits. Using transverse-momentum...
We propose an experimental scheme to generate, in a heralded fashion, arbitrary quantum superpositio...
The spatial modes of photons are one realization of a QuDit, a quantum system that is described in a...
In a recent letter [Phys. Rev. Lett. 94, 100501 (2005)], we presented a scheme for generating pure e...
The bandwidth of any communication system, classical or quantum, is limited by the number of orthogo...
Empirical thesis.Bibliography: pages 137-145.1. Introduction -- 2. Spontaneous parametric down conve...
Advancing quantum information processing is predicated on the preparation of ever-larger multiqubit ...
Entanglement is an invaluable resource to various quantum communication, metrology, and computing pr...
Since its discovery, quantum entanglement has challenged some of the best established views of the w...
We present a method for preparing arbitrary pure states of spatial qudits, namely, D-dimensional (D ...