Projekteja vuodessa
Abstrakti
Quantum metrology, a cornerstone of quantum technologies, exploits entanglement and superposition to achieve higher precision than classical protocols in parameter-estimation tasks. When combined with critical phenomena such as phase transitions, the divergence of quantum fluctuations is predicted to enhance the performance of quantum sensors. Here, we implement a critical quantum sensor using a superconducting parametric (i.e., two-photon driven) Kerr resonator. The sensor, a linear resonator terminated by a superconducting quantum interference device, operates near the critical point of a finite-component second-order dissipative phase transition obtained by scaling the system parameters. We analyze the performance of a frequency-estimation protocol and show that quadratic precision scaling with respect to the system size can be achieved with finite values of the Kerr nonlinearity. Since each photon emitted from the cavity carries more information about the parameter to be estimated compared to its classical counterpart, our protocol opens up perspectives for faster or more precise metrological protocols. Our results demonstrate that quantum advantage in a sensing protocol can be achieved by exploiting a finite-component phase transition.
Alkuperäiskieli | Englanti |
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Artikkeli | 020301 |
Sivumäärä | 16 |
Julkaisu | PRX Quantum |
Vuosikerta | 6 |
Numero | 2 |
Varhainen verkossa julkaisun päivämäärä | 1 huhtik. 2025 |
DOI - pysyväislinkit | |
Tila | Julkaistu - huhtik. 2025 |
OKM-julkaisutyyppi | A1 Alkuperäisartikkeli tieteellisessä aikakauslehdessä |
Sormenjälki
Sukella tutkimusaiheisiin 'Criticality-Enhanced Quantum Sensing with a Parametric Superconducting Resonator'. Ne muodostavat yhdessä ainutlaatuisen sormenjäljen.Projektit
- 2 Aktiivinen
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QuantumMicrowave: Quantum communication and sensing with low-powered devices in the microwave regime
Di Candia, R. (Vastuullinen tutkija)
01/09/2022 → 31/08/2027
Projekti: Academy of Finland: Other research funding
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QuantumMicrowave_research: Quantum communication and sensing with low-powered devices in the microwave regime
Di Candia, R. (Vastuullinen tutkija)
01/09/2022 → 31/12/2025
Projekti: Academy of Finland: Other research funding