We investigate state transfer in modular quantum computer architectures exploiting the ultrastrong coupling regime of interaction between quantum processing units and ICs. We show that protocols based on adiabatic coherent transport may achieve near-ideal single-letter quantum capacity and robustness against parametric fluctuations suppressing leakage induced by the dynamical Casimir effect.

Channel capacity of small modular quantum networks in the ultrastrongly coupled regime

Cordovana, Salvatore Alex
Primo
;
Giannelli, Luigi
Secondo
;
Macri', Nicola;Paladino, Elisabetta
Penultimo
;
Falci, Giuseppe
Ultimo
2025-01-01

Abstract

We investigate state transfer in modular quantum computer architectures exploiting the ultrastrong coupling regime of interaction between quantum processing units and ICs. We show that protocols based on adiabatic coherent transport may achieve near-ideal single-letter quantum capacity and robustness against parametric fluctuations suppressing leakage induced by the dynamical Casimir effect.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.11769/691364
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