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JOURNALS // Journal of Samara State Technical University, Ser. Physical and Mathematical Sciences // Archive

Vestn. Samar. Gos. Tekhn. Univ., Ser. Fiz.-Mat. Nauki [J. Samara State Tech. Univ., Ser. Phys. Math. Sci.], 2015 Volume 19, Number 2, Pages 270–282 (Mi vsgtu1375)

Differential Equations and Mathematical Physics

Hyperfine structure of muonic lithium ions

A. P. Martynenkoab, A. A. Ulybina

a Samara State University, Samara, 443011, Russian Federation
b Samara State Aerospace University, Samara, 443086, Russian Federation

Abstract: On the basis of perturbation theory in fine structure constant $\alpha$ and the ratio of electron to muon masses we calculate recoil corrections of order $\alpha^4 (M_e/M_\mu)$, $\alpha^4 (M_e/M_\mu)^2\ln(M_e/M_\mu)$, $\alpha^4 (M_e/M_\mu)^2$, $\alpha^5(m_e/m_\mu)\ln(m_e/m_\mu)$ to hyperfine splitting of the ground state in muonic lithium ions $(\mu\ e\ ^6_3\mathrm{Li})^+$ and $(\mu e\ ^7_3\mathrm{Li})^+$. We obtain total results for the ground state small hyperfine splittings in $(\mu\ e\ ^6_3\mathrm{Li})^+$ $\Delta\nu_1=14153.03$ MHz and $\Delta\nu_2=21571.26$ MHz and in $(\mu\ e\ ^7_3\mathrm{Li})^+$ $\Delta\nu_1=13991.97$ MHz and $\Delta\nu_2=21735.03$ MHz which can be considered as a reliable estimate for a comparison with future experimental data.

Keywords: quantum electrodynamics, hyperfine splitting, quasipotential method.

UDC: 539.184.26

MSC: 74E35, 74K20

Original article submitted 16/XII/2014
revision submitted – 29/I/2015

DOI: 10.14498/vsgtu1375



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