Paper
30 January 2022 Quantum transistor with multi-qubit memory in an integral waveguide-resonator scheme
Author Affiliations +
Proceedings Volume 12157, International Conference on Micro- and Nano-Electronics 2021; 121572E (2022) https://doi.org/10.1117/12.2625224
Event: International Conference on Micro- and Nano-Electronics 2021, 2021, Zvenigorod, Russian Federation
Abstract
In this work, we present an integrated waveguide-resonator scheme of an atomic quantum transistor with a multi-qubit memory. The quantum transistor is realized in an atomic-photon molecule formed of a linear chain of three interconnected resonators, each of which contains one resonant three-level atom. The resonators are connected through the waveguides to the quantum memory containing long-lived multi-atomic ensembles capable of storage of photonic qubits with an arbitrary temporal mode. We consider the protocols for implementation of one- and two-qubit operations in the proposed scheme over a system of qubits stored in quantum memory. The advantages and experimental implementation of the proposed scheme are also discussed.
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Narkis M. Arslanov, Sergey N. Andrianov, Yuliya A. Kharlamova, and Sergey A. Moiseev "Quantum transistor with multi-qubit memory in an integral waveguide-resonator scheme", Proc. SPIE 12157, International Conference on Micro- and Nano-Electronics 2021, 121572E (30 January 2022); https://doi.org/10.1117/12.2625224
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KEYWORDS
Resonators

Quantum communications

Transistors

Quantum memory

Waveguides

Molecules

Quantum computing

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