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Quantum network transfer and storage with compact localized states induced by local symmetries

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arxiv 1811.02950 v1 pith:5AT4BCMV submitted 2018-11-07 quant-ph cond-mat.other

classification quant-phcond-mat.other
keywords statestransfernetworksetupsstoragecompactinducedlattices
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We propose modulation protocols designed to generate, store and transfer compact localized states in a quantum network. Induced by parameter tuning or local reflection symmetries, such states vanish outside selected domains of the complete system and are therefore ideal for information storage. Their creation and transfer is here achieved either via amplitude phase flips or via optimal temporal control of inter-site couplings. We apply the concept to a decorated, locally symmetric Lieb lattice where one sublattice is dimerized, and also demonstrate it for more complex setups. The approach allows for a flexible storage and transfer of states along independent paths in lattices supporting flat energetic bands. The generic network and protocols proposed can be utilized in various physical setups such as atomic or molecular spin lattices, photonic waveguide arrays, and acoustic setups.

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  1. Designing pretty good state transfer via isospectral reductions

    quant-ph 2019-08 conditional novelty 6.0 of 10

    An algorithm uses isospectral reductions to extract the polynomial factors that guarantee pretty good state transfer, then tunes network parameters to satisfy them, with an extension to storing and transferring compac...

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