Resonator-assisted quantum transduction between superconducting qubits and trapped atomic systems via Rydberg levels

Fuente: arXiv
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Main Authors: Semião, Fernando L., Keller, Matthias
Format: Preprint
Published: 2025
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author Semião, Fernando L.
Keller, Matthias
author_facet Semião, Fernando L.
Keller, Matthias
contents Using a shared microwave resonator, we propose a transduction scheme between superconducting qubits and qubit states encoded in the low-lying internal levels of trapped atomic systems. The approach employs atomic Rydberg levels together with laser pulses that connect them to the low-lying qubit states. We explore two coupling protocols: one based on resonant interactions between the subsystems, and another operating in the dispersive regime, where the resonator is far detuned from the transition frequencies of the matter qubits. These protocols enable the transfer of a general qubit state from the superconducting qubit to the atomic qubit. Transfer fidelity is evaluated across different coupling regimes and under various sources of dissipation and decoherence, including resonator decay, Rydberg state decay, and both relaxation and pure dephasing of the superconducting qubit, providing a detailed assessment of the performance of the proposed scheme.
format Preprint
id arxiv_https___arxiv_org_abs_2501_03201
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Resonator-assisted quantum transduction between superconducting qubits and trapped atomic systems via Rydberg levels
Semião, Fernando L.
Keller, Matthias
Quantum Physics
Using a shared microwave resonator, we propose a transduction scheme between superconducting qubits and qubit states encoded in the low-lying internal levels of trapped atomic systems. The approach employs atomic Rydberg levels together with laser pulses that connect them to the low-lying qubit states. We explore two coupling protocols: one based on resonant interactions between the subsystems, and another operating in the dispersive regime, where the resonator is far detuned from the transition frequencies of the matter qubits. These protocols enable the transfer of a general qubit state from the superconducting qubit to the atomic qubit. Transfer fidelity is evaluated across different coupling regimes and under various sources of dissipation and decoherence, including resonator decay, Rydberg state decay, and both relaxation and pure dephasing of the superconducting qubit, providing a detailed assessment of the performance of the proposed scheme.
title Resonator-assisted quantum transduction between superconducting qubits and trapped atomic systems via Rydberg levels
topic Quantum Physics
url https://arxiv.org/abs/2501.03201