Experimental entanglement generation using multiport beam splitters
Multipartite entanglement plays a central role in optical quantum technologies. One way to entangle two photons is to prepare them in orthogonal internal states, for example, in two polarisations, and then send them through a balanced beam splitter. Post-selecting on the cases where there is one pho...
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Veröffentlicht in: | New journal of physics 2023-06, Vol.25 (6), p.63027 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Multipartite entanglement plays a central role in optical quantum technologies. One way to entangle two photons is to prepare them in orthogonal internal states, for example, in two polarisations, and then send them through a balanced beam splitter. Post-selecting on the cases where there is one photon in each output port results in a maximally entangled state. This idea can be extended to schemes for the post-selected generation of larger entangled states. Typically, switching between different types of entangled states requires different arrangements of beam splitters and so a new experimental setup. Here, we demonstrate a simple and versatile scheme to generate different types of genuine tripartite entangled states with only one experimental setup. We send three photons through a three-port splitter and vary their internal states before post-selecting on certain output distributions. This results in the generation of tripartite W, G and GHZ states. We obtain fidelities of up to
(
87.3
±
1.1
)
%
with regard to the respective ideal states, confirming a successful generation of genuine tripartite entanglement. |
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ISSN: | 1367-2630 1367-2630 |
DOI: | 10.1088/1367-2630/acdd1a |