This work focuses on the proposal of a quantum non demolition detection scheme with the aim of enhancing the sensitivity of the axion dark matter signal. The proposed detection scheme consists of two qubits coupled to the same three-dimensional (3D) storage cavity as well as to their own readout resonators. Quantum dynamics and electromagnetic simulations are performed to analyze and characterize the qubits and cavities, providing insights for fabrication.

Komnang, A.S.P., Banchi, L., Beretta, M., Chiarello, F., D'Elia, A., Faverzani, M., et al. (2026). Enhancing axion searches with quantum coincidence in superconducting qubits. IL NUOVO CIMENTO C, 49(1-2) [10.1393/ncc/i2026-26077-4].

Enhancing axion searches with quantum coincidence in superconducting qubits

Chiarello F.
Software
;
Maccarrone G.
Conceptualization
;
Milillo D.
Software
;
Pira C.
Resources
;
Rettaroli A.
Conceptualization
;
2026-01-01

Abstract

This work focuses on the proposal of a quantum non demolition detection scheme with the aim of enhancing the sensitivity of the axion dark matter signal. The proposed detection scheme consists of two qubits coupled to the same three-dimensional (3D) storage cavity as well as to their own readout resonators. Quantum dynamics and electromagnetic simulations are performed to analyze and characterize the qubits and cavities, providing insights for fabrication.
2026
Komnang, A.S.P., Banchi, L., Beretta, M., Chiarello, F., D'Elia, A., Faverzani, M., et al. (2026). Enhancing axion searches with quantum coincidence in superconducting qubits. IL NUOVO CIMENTO C, 49(1-2) [10.1393/ncc/i2026-26077-4].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11590/547342
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