How can one detect entanglement between multiple optical paths sharing a single photon? We address this question by proposing a scalable protocol, which only uses local measurements where single photon detection is combined with small displacement operations. The resulting entanglement witness does not require postselection, nor assumptions about the photon number in each path. Furthermore, it guarantees that entanglement lies in a subspace with at most one photon per optical path and reveals genuinely multipartite entanglement. We demonstrate its scalability and resistance to loss by performing various experiments with two and three optical paths. We anticipate applications of our results for quantum network certification
In the past two decades, the union of quantum mechanics and information science has led to significa...
We propose a method for preparing maximal path entanglement with a definite photon-number N, larger ...
The future of quantum communication relies on quantum networks composed by observers sharing multipa...
How can one detect entanglement between multiple optical paths sharing a single photon? We address t...
How can a multipartite single-photon path-entangled state be certified efficiently by means of loca...
International audienceHow can a multipartite single-photon path-entangled state be certified efficie...
International audienceHow can a multipartite single-photon path-entangled state be certified efficie...
International audienceHow can a multipartite single-photon path-entangled state be certified efficie...
International audienceHow can a multipartite single-photon path-entangled state be certified efficie...
International audienceHow can a multipartite single-photon path-entangled state be certified efficie...
published versionInternational audienceSingle-photon entangled states, i.e. states describing two op...
published versionInternational audienceSingle-photon entangled states, i.e. states describing two op...
Single-photon entangled states, i.e., states describing two optical paths sharing a single photon, c...
Single-photon entangled states, i.e., states describing two optical paths sharing a single photon, c...
In the past two decades, the union of quantum mechanics and information science has led to significa...
In the past two decades, the union of quantum mechanics and information science has led to significa...
We propose a method for preparing maximal path entanglement with a definite photon-number N, larger ...
The future of quantum communication relies on quantum networks composed by observers sharing multipa...
How can one detect entanglement between multiple optical paths sharing a single photon? We address t...
How can a multipartite single-photon path-entangled state be certified efficiently by means of loca...
International audienceHow can a multipartite single-photon path-entangled state be certified efficie...
International audienceHow can a multipartite single-photon path-entangled state be certified efficie...
International audienceHow can a multipartite single-photon path-entangled state be certified efficie...
International audienceHow can a multipartite single-photon path-entangled state be certified efficie...
International audienceHow can a multipartite single-photon path-entangled state be certified efficie...
published versionInternational audienceSingle-photon entangled states, i.e. states describing two op...
published versionInternational audienceSingle-photon entangled states, i.e. states describing two op...
Single-photon entangled states, i.e., states describing two optical paths sharing a single photon, c...
Single-photon entangled states, i.e., states describing two optical paths sharing a single photon, c...
In the past two decades, the union of quantum mechanics and information science has led to significa...
In the past two decades, the union of quantum mechanics and information science has led to significa...
We propose a method for preparing maximal path entanglement with a definite photon-number N, larger ...
The future of quantum communication relies on quantum networks composed by observers sharing multipa...