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Noiseless Linear Amplification and Loss-Tolerant Quantum Relay using Coherent State Superpositions

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arxiv 2211.08035 v1 pith:MXY6RJG3 submitted 2022-11-15 quant-ph physics.optics

classification quant-phphysics.optics
keywords coherentquantumstateamplificationfidelitylinearloss-tolerantnoiseless
verification ladder T0 review T1 audit T2 compute T3 formal
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Noiseless linear amplification (NLA) is useful for a wide variety of quantum protocols. Here we propose a fully scalable amplifier which, for asymptotically large sizes, can perform perfect fidelity NLA on any quantum state. Given finite resources however, it is designed to perform perfect fidelity NLA on coherent states and their arbitrary superpositions. Our scheme is a generalisation of the multi-photon quantum scissor teleamplifier, which we implement using a coherent state superposition resource state. Furthermore, we prove our NLA is also a loss-tolerant relay for multi-ary phase-shift keyed coherent states. Finally, we demonstrate that our NLA is also useful for continuous-variable entanglement distillation, even with realistic experimental imperfections.

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