.We investigate the spatio-temporal structure of the biphoton entanglement in Parametric Down Conversion (PDC). In particular we study the biphoton amplitude at the output face of the nonlinear crystal (near-field) and we demonstrate its X-shaped geometry in the space-time dimensions, i.e. the non-factorability of the state with respect to spatial and temporal variables. Our analysis provides a precise and quantitative characterization of this structure in various regimes and types of phase matching of PDC. The key elements of novelty emerging from our analysis are the non-factorability of the state with respect to spatial and temporal variables, and the extreme relative localization of the entangled photons, both in space (few microns) and time (few femtoseconds). This extreme localization is connected to our ability to resolve the photon positions in the source near-field. The non factorability opens the possibility of tailoring the temporal entanglement by acting on the spatial degrees of freedom of twin photons.

X-entenglement of PDC photon pairs

Caspani L.;BRAMBILLA, ENRICO;
2009-01-01

Abstract

.We investigate the spatio-temporal structure of the biphoton entanglement in Parametric Down Conversion (PDC). In particular we study the biphoton amplitude at the output face of the nonlinear crystal (near-field) and we demonstrate its X-shaped geometry in the space-time dimensions, i.e. the non-factorability of the state with respect to spatial and temporal variables. Our analysis provides a precise and quantitative characterization of this structure in various regimes and types of phase matching of PDC. The key elements of novelty emerging from our analysis are the non-factorability of the state with respect to spatial and temporal variables, and the extreme relative localization of the entangled photons, both in space (few microns) and time (few femtoseconds). This extreme localization is connected to our ability to resolve the photon positions in the source near-field. The non factorability opens the possibility of tailoring the temporal entanglement by acting on the spatial degrees of freedom of twin photons.
2009
AA.VV.
Photon Counting Applications, Quantum Optics, and Quantum Information Transfer and Processing II
7355
1
15
15
735509
Nessuno
9780819476296
Quantum Optics, Parametric Down-Conversion, Spatio-temporal entanglement.
268
info:eu-repo/semantics/bookPart
Caspani, L.; Brambilla, Enrico; Jedrkiewicz, Ottavia; Lugiato, Luigi; Gatti, A.
none
Contributo specifico in volume::Articolo in Volume
5
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11383/1788533
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