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Macroscopic quantum teleportation with ensembles of qubits

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arxiv 2411.02968 v2 pith:SCRSEQZW submitted 2024-11-05 quant-ph

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keywords quantumteleportationmeasurementsspinensemblesstateangularaverage
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We develop methods for performing quantum teleportation of the total spin variables of an unknown state, using quantum nondemolition measurements, spin projection measurements, and classical communication. While theoretically teleportation of high-dimensional states can be attained with the assumption of generalized Bell measurements, this is typically experimentally non-trivial to implement. We introduce two protocols and show that, on average, the teleportation succeeds in teleporting the spin variables of a spin coherent state with average zero angular error in the ideal case, beating classical strategies based on quantum state estimation. In a single run of the teleportation, there is an angular error at the level of ~ 0.1 radians for large ensembles. A potential physical implementation for the scheme is with atomic ensembles and quantum nondemolition measurements performed with light. We analyze the decoherence of the protocols and find that the protocol is robust even in the limit of large ensemble sizes.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Quantum teleportation of cat states with binary-outcome measurements

    quant-ph 2024-12 conditional novelty 6.0 of 10

    A teleportation protocol for cat-state encoded qubits using only beam splitters and binary-outcome parity/dispersive measurements achieves near-perfect fidelity with repeated measurements.

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