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Superconducting Qubits
Approaching energy quantum limit detection of microwave photons with Josephson Junctions
arXiv
Authors: Y. Q. Chai, S. N. Wang, P. H. OuYang, L. F. Wei
Year
2024
Paper ID
37392
Status
Preprint
Abstract Read
~2 min
Abstract Words
138
Citations
N/A
Abstract
Single-photon detection is an energy quantum limit detection (EQLD) of a significantly weak electromagnetic wave. Given the sensitivity of the conventional electromagnetic induction microwave receiver working at room-temperature is very limited, due to the significantly strong thermal noise, here we analyze the possibility of approaching the EQLD of the weak microwave signal by using a current-biased Josephson Junction (CBJJ) detector. By numerically simulating the dynamics for the phase particle of the CBJJ, we propose an approach to describe the discriminability between the probabilistically escaped events of the phase particle with and without the microwave current driving, by measuring the minimum drm KC-index. We predicate that, the experimentally demonstrated CBJJ detectors possess the ability to resolve about a dozen photons. The feasibility of the desired EQLD of microwave signal by using the CBJJ detector is also discussed.
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- This paper contributes to the Superconducting Qubits research area in the Quantum Articles archive.
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- Single-photon detection is an energy quantum limit detection (EQLD) of a significantly weak electromagnetic wave.
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