Zeeman optical pumping of 87Rb atoms in a hollow-core photonic crystal fiber

Author:

Krehlik Tomasz1,Stabrawa Artur1,Gartman Rafał1,Kaczmarek Krzysztof T.1,Löw Robert2,Wojciechowski AdamORCID

Affiliation:

1. ORCA Computing Ltd.

2. University of Stuttgart

Abstract

Preparation of an atomic ensemble in a particular Zeeman state is a critical step of many protocols for implementing quantum sensors and quantum memories. These devices can also benefit from optical fiber integration. In this work we describe experimental results supported by a theoretical model of single-beam optical pumping of 87Rb atoms within a hollow-core photonic crystal fiber. The observed 50% population increase in the pumped F = 2, mF = 2 Zeeman substate along with the depopulation of remaining Zeeman substates enabled us to achieve a threefold improvement in the relative population of the mF = 2 substate within the F = 2 manifold, with 60% of the F = 2 population residing in the mF = 2 dark sublevel. Based on theoretical model, we propose methods to further improve the pumping efficiency in alkali-filled hollow-core fibers.

Funder

Jagiellonian University, WFAIS

Jagiellonian University, Strategic Programme Excellence Initiative, Priority Research Area DigiWorld

U.S. Air Force

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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