We investigate the ultimate quantum limits to the achievable uncertainty in the estimation of the transition frequency between two atomic levels. We focus on Rabi, Ramsey, and coherent-population-trapping (CPT) techniques, which are widely employed in experiments. We prove that in the Rabi and Ramsey schemes, measuring the atomic population allows one to reach the minimum uncertainty, but for the CPT setup, a measurement involving the coherences between the levels results in a further improvement of the estimation. As a paradigmatic example of possible noises, the effect of cavity coupling fluctuations is considered in the Rabi and Ramsey scenarios. As a figure of merit, we assess the Fisher information of the population measurement and compare its value with the maximum one given by the quantum Fisher information, which is achieved by optimizing over all the possible measurements allowed by quantum mechanics.

Ultimate bounds for precision of atomic clock frequency measurement: Rabi, Ramsey, and coherent-population-trapping techniques / S. Olivares, S. Micalizio, M.G.A. Paris. - In: PHYSICAL REVIEW A. - ISSN 2469-9926. - 113:(2026 May 13), pp. 052428.1-052428.13. [10.1103/gk6v-7ghm]

Ultimate bounds for precision of atomic clock frequency measurement: Rabi, Ramsey, and coherent-population-trapping techniques

S. Olivares
Primo
;
M.G.A. Paris
Ultimo
2026

Abstract

We investigate the ultimate quantum limits to the achievable uncertainty in the estimation of the transition frequency between two atomic levels. We focus on Rabi, Ramsey, and coherent-population-trapping (CPT) techniques, which are widely employed in experiments. We prove that in the Rabi and Ramsey schemes, measuring the atomic population allows one to reach the minimum uncertainty, but for the CPT setup, a measurement involving the coherences between the levels results in a further improvement of the estimation. As a paradigmatic example of possible noises, the effect of cavity coupling fluctuations is considered in the Rabi and Ramsey scenarios. As a figure of merit, we assess the Fisher information of the population measurement and compare its value with the maximum one given by the quantum Fisher information, which is achieved by optimizing over all the possible measurements allowed by quantum mechanics.
No
English
Settore PHYS-04/A - Fisica teorica della materia, modelli, metodi matematici e applicazioni
Articolo
Esperti anonimi
Pubblicazione scientifica
   Recovering Information in Sloppy QUantum modEls (RISQUE)
   RISQUE
   MINISTERO DELL'UNIVERSITA' E DELLA RICERCA
   2022T25TR3_003

   Quantum metrology enhancement through continuous-time measurements and control (QMORE)
   QMORE
   UNIVERSITA' DEGLI STUDI DI CAMERINO
13-mag-2026
American Physical Society (APS) : American Institute of Physics
113
052428
1
13
13
Pubblicato
Periodico con rilevanza internazionale
orcid
Aderisco
info:eu-repo/semantics/article
Ultimate bounds for precision of atomic clock frequency measurement: Rabi, Ramsey, and coherent-population-trapping techniques / S. Olivares, S. Micalizio, M.G.A. Paris. - In: PHYSICAL REVIEW A. - ISSN 2469-9926. - 113:(2026 May 13), pp. 052428.1-052428.13. [10.1103/gk6v-7ghm]
open
Prodotti della ricerca::01 - Articolo su periodico
3
262
Article (author)
Periodico con Impact Factor
S. Olivares, S. Micalizio, M.G.A. Paris
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/1246087
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