Title :
Witnessing trustworthy single-photon entanglement with local homodyne measurements
Author :
Morin, O. ; D´Auria, Virginia ; Fabre, Claude ; Laurat, J. ; Bancal, J.-D. ; Ho, Mantak ; Sekatski, P. ; Gisin, Nicolas ; Sangouard, Nicolas
Author_Institution :
Lab. Kastler Brossel, Univ. Pierre et Marie Curie, Paris, France
Abstract :
Single-photon entangled states, i.e. states describing two optical paths sharing a single-photon, constitute the simplest form of entanglement. Yet they provide a valuable resource in quantum information science. Specifically, they lie at the heart of quantum networks, as they can be used for quantum teleportation, swapped and purified with linear optics. The main drawback of such entanglement is the difficulty in measuring it. Here, we present and experimentally test an entanglement witness [1] allowing one not only to say whether a given state is path-entangled but also that entanglement lies in the subspace where the optical paths are each filled with one photon at most, i.e. refers to single-photon entanglement. It uses local homodyning only and relies on no assumption about the Hilbert space dimension of the measured system, as explained in the following.
Keywords :
Hilbert spaces; homodyne detection; quantum entanglement; quantum optics; Hilbert space dimension; local homodyne measurements; optical paths; path-entangled state; single-photon entanglement; Nonlinear optics; Optical polarization; Oscillators; Photonics; Polynomials; Quantum entanglement;
Conference_Titel :
Lasers and Electro-Optics Europe (CLEO EUROPE/IQEC), 2013 Conference on and International Quantum Electronics Conference
Conference_Location :
Munich
Print_ISBN :
978-1-4799-0593-5
DOI :
10.1109/CLEOE-IQEC.2013.6801706