Lamb shift in the muonic deuterium atom

We present an investigation of the Lamb shift (2P{sub 1/2}-2S{sub 1/2}) in the muonic deuterium ({mu}D) atom using the three-dimensional quasipotential method in quantum electrodynamics. The vacuum polarization, nuclear-structure, and recoil effects are calculated with the account of contributions o...

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Veröffentlicht in:Physical review. A, Atomic, molecular, and optical physics Atomic, molecular, and optical physics, 2011-11, Vol.84 (5), Article 052514
Hauptverfasser: Krutov, A. A., Martynenko, A. P.
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description We present an investigation of the Lamb shift (2P{sub 1/2}-2S{sub 1/2}) in the muonic deuterium ({mu}D) atom using the three-dimensional quasipotential method in quantum electrodynamics. The vacuum polarization, nuclear-structure, and recoil effects are calculated with the account of contributions of orders {alpha}{sup 3}, {alpha}{sup 4}, {alpha}{sup 5}, and {alpha}{sup 6}. The results are compared with earlier performed calculations. The obtained numerical value of the Lamb shift at 202.4139 meV can be considered a reliable estimate for comparison with forthcoming experimental data.
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subjects ATOMIC AND MOLECULAR PHYSICS
COMPARATIVE EVALUATIONS
DEUTERIUM
LAMB SHIFT
MEV RANGE
MUONIC ATOMS
NUCLEAR STRUCTURE
P STATES
PHYSICS OF ELEMENTARY PARTICLES AND FIELDS
POTENTIALS
QUANTUM ELECTRODYNAMICS
RECOILS
S STATES
THREE-DIMENSIONAL CALCULATIONS
VACUUM POLARIZATION
title Lamb shift in the muonic deuterium atom
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