1,386 research outputs found
Radiative nonrecoil nuclear finite size corrections of order to the Lamb shift in light muonic atoms
On the basis of quasipotential method in quantum electrodynamics we calculate
nuclear finite size radiative corrections of order to the
Lamb shift in muonic hydrogen and helium. To construct the interaction
potential of particles, which gives the necessary contributions to the energy
spectrum, we use the method of projection operators to states with a definite
spin. Separate analytic expressions for the contributions of the muon
self-energy, the muon vertex operator and the amplitude with spanning photon
are obtained. We present also numerical results for these contributions using
modern experimental data on the electromagnetic form factors of light nuclei.Comment: 8 pages, 1 Figur
Hyperfine structure of S-states in muonic deuterium
On the basis of quasipotential method in quantum electrodynamics we calculate
corrections of order and to hyperfine structure of S-wave
energy levels of muonic deuterium. Relativistic corrections, effects of vacuum
polarization in first, second and third orders of perturbation theory, nuclear
structure and recoil corrections are taken into account. The obtained numerical
values of hyperfine splitting meV (1S state) and
meV (2S state) represent reliable estimate for a
comparison with forthcoming experimental data of CREMA collaboration. The
hyperfine structure interval meV can be used for precision check of quantum
electrodynamics predictions for muonic deterium.Comment: 18 pages, 7 figure
The contribution of axial-vector mesons to hyperfine structure of muonic hydrogen
The contribution from the axial-vector meson exchange to the potential of the
muon-proton interaction in muonic hydrogen induced by anomalous axial-vector
meson coupling to two photon state is calculated. It is shown that such
contribution to the hyperfine splitting in muonic hydrogen is large and
important for a comparison with precise experimental data. In the light of our
result, the proton radius "puzzle" is discussed.Comment: 14 pages, 2 figure
Relativistic corrections to \eta_c-pair production in high energy proton-proton collisions
On the basis of perturbative QCD and the relativistic quark model we
calculate relativistic corrections to the double meson production in
proton-proton interactions at LHC energies. Relativistic terms in the
production amplitude connected with the relative motion of heavy quarks and the
transformation law of the bound state wave functions to the reference frame of
moving charmonia are taken into account. For the gluon and quark propagators
entering the amplitude we use a truncated expansion in relative quark momenta
up to the second order. Relativistic corrections to the quark bound state wave
functions are considered by means of the Breit-like potential. It turns out
that the examined effects decrease total nonrelativistic cross section more
than two times and on 20 percents in the rapidity region of LHCb detector.Comment: 12 pages, 3 figure
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