Abstract

Nuclear structure corrections to hyperfine splitting of energy levels in muonic lithium, beryllium, and boron ions are calculated. Account is taken of the contributions from the two-photon exchange amplitudes, including the vacuum polarization effect, and from the one-photon amplitude, which provide corrections to the nuclear structure and recoil of order $${{\alpha }^{5}}$$ and $${{\alpha }^{6}}$$ . Numerical results for different parametrizations of electromagnetic form factors are compared.

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