We demonstrate a hybrid method based on field ionization and state-selective deexcitation capable of measuring the lifetimes of high-lying Rydberg levels. For nS Rydberg states of Rb atoms with principal quantum number 60<=n<=88, we measure both the lifetimes of single target states and those of the ensembles of Rydberg states populated via blackbody-radiation-induced transitions. We find good overall agreement with numerical calculations of the expected lifetimes in both cases. However, for the target-state lifetimes, we find a local deviation towards shorter lifetimes for states around n=72, which we interpret as a signature of a modified blackbody spectrum in the finite volume in which our experiments take place.

Measurements of single-state and state-ensemble lifetimes of high-lying Rb Rydberg levels

Simonelli C;Arimondo E;Ciampini D;Morsch O
2019

Abstract

We demonstrate a hybrid method based on field ionization and state-selective deexcitation capable of measuring the lifetimes of high-lying Rydberg levels. For nS Rydberg states of Rb atoms with principal quantum number 60<=n<=88, we measure both the lifetimes of single target states and those of the ensembles of Rydberg states populated via blackbody-radiation-induced transitions. We find good overall agreement with numerical calculations of the expected lifetimes in both cases. However, for the target-state lifetimes, we find a local deviation towards shorter lifetimes for states around n=72, which we interpret as a signature of a modified blackbody spectrum in the finite volume in which our experiments take place.
2019
Istituto Nazionale di Ottica - INO
Inglese
100
3
030501
030501
6
https://journals.aps.org/pra/abstract/10.1103/PhysRevA.100.030501
Sì, ma tipo non specificato
Rydberg atom
Lifetime measurement
Blackbody radiation
We thank Thomas Gallagher, Joszef Fortagh, Markus Greiner, David Petrosyan, Nikola Sibali ' c, Levi Schachter, and Darrick Chang for discussions, and Alessandro Tredicucci and Giorgio Carelli for the loan of microwave equipment. This work was funded by the H2020-FETPROACT-2014 Grant No. 640378 (RYSQ). I.I.R. and I.I.B. were supported by the Russian Foundation for Basic Research under Grant No. 1702-00987 (for lifetime calculations), by the Russian Science Foundation under Grant No. 18-12-00313 (for multistep transitions induced by blackbody radiation), and by Novosibirsk State University.
10
info:eu-repo/semantics/article
262
Archimi, M; Simonelli, C; Di Virgilio, L; Greco, A; Ceccanti, M; Arimondo, E; Ciampini, D; Ryabtsev, I I; Beterov, I I; Morsch, O
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/427473
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