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Remote preparation of continuous-variable qubits using loss-tolerant hybrid entanglement of light

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arxiv 1809.10700 v1 pith:FWHGBQZA submitted 2018-09-27 quant-ph

Remote preparation of continuous-variable qubits using loss-tolerant hybrid entanglement of light

classification quant-ph
keywords continuous-variableentanglementstatecapabilitydistanthybridinformationlight
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Transferring quantum information between distant nodes of a network is a key capability. This transfer can be realized via remote state preparation where two parties share entanglement and the sender has full knowledge of the state to be communicated. Here we demonstrate such a process between heterogeneous nodes functioning with different information encodings, i.e., particle-like discrete-variable optical qubits and wave-like continuous-variable ones. Using hybrid entanglement of light as a shared resource, we prepare arbitrary coherent-state superpositions controlled by measurements on the distant discrete-encoded node. The remotely prepared states are fully characterized by quantum state tomography and negative Wigner functions are obtained. This work demonstrates a novel capability to bridge discrete- and continuous-variable platforms.

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