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High resource of azimuthal entanglement in terms of Cartesian variables of noncollinear biphotons

2017/08/31 by М. В. Федоров, M. V. Fedorov
Computer Science · Mathematics · Physics and Astronomy · #Azimuth #Cartesian coordinate system #Coincidence #Degenerate energy levels #Geometry #Laser-Matter Interactions and Applications #Mathematics #Optics #Photon #Physics #Quantum #Quantum Information and Cryptography #Quantum entanglement #Quantum mechanics #Quantum optics and atomic interactions #Wave function #math.PR #quant-ph

paper · pdf · doi:10.1103/physreva.97.012319

published as Phys. Rev. A 97, 012319 (2018)

arxiv created 2017/09/03 · openalex created_date 2017/09/15 · openalex publication_date 2018/01/16 · arxiv updated 2018/01/24 · openalex updated_date 2026/08/05

Abstract

Single-particle and coincidence distributions of photons are analyzed for the noncollinear frequency-degenerate type-I regime of spontaneous parametric down-conversion. Noncollinearity itself is shown to provide a new mechanism of strong broadening of the single-particle distributions in Cartesian components of the photon's transverse wave vectors. Related to this, the degree of entanglement appears to be very high in agreement with the earlier performed analysis in the formalism of spherical angles characterizing photon's wave vectors [Phys. Rev. A 93, 033830 (2016)]. In Cartesian variables, very broad curves of single-particle distributions are found to have a rather unusual and peculiar shape. In theory, the key reason for these effects is the reduction of the total wave function of two photons over one of two orthogonal degrees of freedom. In the suggested and discussed experimental schemes this means that all photons of the emission cone have to be taken into account rather than only photons propagating in one given plane which is a common practice in many experiments.

Citations