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JOURNALS // Kvantovaya Elektronika // Archive

Kvantovaya Elektronika, 2017 Volume 47, Number 9, Pages 778–782 (Mi qe16682)

This article is cited in 11 papers

Quantum Technologies

Photon echo of an ultranarrow optical transition of 167Er3+ in 7LiYF4 crystals

M. M. Minnegalieva, E. I. Baibekovb, K. I. Gerasimova, S. A. Moiseeva, M. A. Smirnova, R. V. Urmancheeva

a Kazan Quantum Center, A.N. Tupolev Kazan National Research Technical University, Kazan, Russia
b Kazan (Volga Region) Federal University

Abstract: The longitudinal and transverse relaxation times for a transition between hyperfine sublevels of the lower electronic states of the 4I15/2 and 4I9/2 multiplets of 167Er3+ ions in 7LiYF4 crystals have been determined for the first time using two-pulse and stimulated photon echo measurements in zero magnetic field at a temperature of 4 K. The decay of the photon echo signal has been shown to be modulated, which is tentatively attributed to the superhyperfine interaction of the 167Er3+ ions with their 19F- nearest neighbours. The contributions of various types of interaction to the ultranarrow linewidth (~24 MHz) of the transition in question are discussed. Our results demonstrate that this optical transition of the 167Er3+ ion in 7LiYF4 crystals is potentially attractive for use in Raman quantum memory schemes.

Keywords: photon echo, optical spectroscopy, ultranarrow optical absorption lines, rare-earth ions, Er, LiYF4, Raman quantum memory.

Received: 07.07.2017


 English version:
Quantum Electronics, 2017, 47:9, 778–782

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