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    Anomalous suppression of spin-exchange relaxation in alignment signals in cesium in ultraweak magnetic fields

    M. V. Petrenko and A. K. Vershovskii*

    • *Contact author: antver@mail.ioffe.ru

    Phys. Rev. A 112, 013123 – Published 30 July, 2025

    DOI: https://doi.org/10.1103/rmyw-8zny

    Abstract

    The results of a study of the dynamics of atomic moments alignment in cesium under optical pumping by linearly polarized resonant light in ultraweak magnetic field are presented. It is shown that there are alignment components whose relaxation does not depend on spin-exchange broadening. The effect of suppression of spin-exchange relaxation in zero magnetic fields is detected, which is similar in its manifestations to the SERF (spin-exchange relaxation free) effect observed in orientation signals. This observation is interesting from the standpoint of general theory since the law of conservation of angular momentum responsible for maintaining orientation in the SERF mode should not guarantee the preservation of alignment under the same conditions. A comparison with theoretically calculated parameters of SERF resonances in orientation is given. A qualitative explanation of the observed effect is presented.

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