4.2 Article Proceedings Paper

Interaction of blackbody radiation with rubidium and caesium atoms in small-angular-momentum Rydberg states

Journal

QUANTUM ELECTRONICS
Volume 52, Issue 6, Pages 570-576

Publisher

TURPION LTD
DOI: 10.1070/QEL18059

Keywords

alkali atoms; Rydberg states; radiative transitions; blackbody radiation; ionisation; cross section; quantum defect method

Funding

  1. Ministry of Science and Higher Education of the Russian Federation [FZGU-2020-0035]

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We examine the possibilities of refining an asymptotic description and quantitative calculations of the effects induced by thermal blackbody radiation on the Rydberg states of atoms. Based on analytical expressions, we present numerical estimates for the contributions of photoionisation probabilities to the broadening of the Rydberg energy level and the shifts in the Rydberg-state energy levels induced by thermal effects.
We examine the possibilities of refining an asymptotic description and quantitative calculations of the effects induced by thermal blackbody radiation (BBR) of the environment on the Rydberg states of atoms. Numerical values are calculated and asymptotic expressions are proposed for simplified estimates of natural lifetimes and threshold photoionisation cross sections for Rydberg states of rubidium and caesium atoms with large values of the principal quantum number, n 3 20, and small orbital momenta, l = 0, 1, 2, 3. Based on analytical expressions, we present numerical estimates for the contributions of photoionisation probabilities to the BBR-induced broadening of the Rydberg energy level, as well as the contributions of continuum integrals to thermally induced shifts in the Rydberg-state energy levels.

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