We apply the theory of semiparametric estimation to a Hong-Ou-Mandel interference experiment with a spectrally entangled two-photon state generated by spontaneous parametric down-conversion. Thanks to the semiparametric approach, we can evaluate the Cramér-Rao bound and find an optimal estimator for a particular parameter of interest without assuming perfect knowledge of the two-photon wave function, formally treated as an infinity of nuisance parameters. In particular, we focus on the estimation of the Hermite-Gauss components of the marginal symmetrized wave function, whose Fourier transform governs the shape of the temporal coincidence profile. We show that negativity of these components is an entanglement witness of the two-photon state.

Semiparametric estimation of the Hong-Ou-Mandel profile / Cimini, Valeria; Albarelli, Francesco; Gianani, Ilaria; Barbieri, Marco. - In: PHYSICAL REVIEW A. - ISSN 2469-9926. - 104:6(2021), pp. 1-6. [10.1103/PhysRevA.104.L061701]

Semiparametric estimation of the Hong-Ou-Mandel profile

Cimini, Valeria;Gianani, Ilaria
;
Barbieri, Marco
2021

Abstract

We apply the theory of semiparametric estimation to a Hong-Ou-Mandel interference experiment with a spectrally entangled two-photon state generated by spontaneous parametric down-conversion. Thanks to the semiparametric approach, we can evaluate the Cramér-Rao bound and find an optimal estimator for a particular parameter of interest without assuming perfect knowledge of the two-photon wave function, formally treated as an infinity of nuisance parameters. In particular, we focus on the estimation of the Hermite-Gauss components of the marginal symmetrized wave function, whose Fourier transform governs the shape of the temporal coincidence profile. We show that negativity of these components is an entanglement witness of the two-photon state.
2021
quantum; photons; interference; space; optics; physics
01 Pubblicazione su rivista::01a Articolo in rivista
Semiparametric estimation of the Hong-Ou-Mandel profile / Cimini, Valeria; Albarelli, Francesco; Gianani, Ilaria; Barbieri, Marco. - In: PHYSICAL REVIEW A. - ISSN 2469-9926. - 104:6(2021), pp. 1-6. [10.1103/PhysRevA.104.L061701]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1671559
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