Nuclear Polarizabilities and Logarithmic Sum Rules
arXiv:nucl-th/9702019 · doi:10.1103/PhysRevC.55.2764
Abstract
The electric polarizability and logarithmic mean-excitation energy are calculated for the deuteron using techniques introduced in atomic physics. These results are then used to improve limits on the atomic-deuterium frequency shift due to nuclear polarization in the unretarded dipole limit, as well as confirming previous results.
7 pages, latex -- To appear in Phys. Rev. C --
Cited by in corpus (24)
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- Theory of Light Hydrogenlike Atoms
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- Using effective field theory to analyse low-energy Compton scattering data from protons and light nuclei
- Improving the Convergence of NN Effective Field Theory
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- Nuclear structure contribution to the Lamb shift in muonic deuterium
- The Polarizability of the Deuteron
- Three-photon exchange nuclear structure correction in hydrogenic systems
- Improved estimates of the nuclear structure corrections in D
- Nuclear Polarization Corrections to mu-d Atoms in Zero-Range Approximation
- Higher-Order Nuclear-Polarizability Corrections in Atomic Hydrogen
- Higher-Order Nuclear-Size Corrections in Atomic Hydrogen
- Radiative Correction to the Nuclear-Size Effect and Hydrogen-Deuterium Isotopic Shift
- Sum Rules and Spin-Dependent Polarizabilities of the Deuteron in Effective Field Theory
- Neutron Polarizabilities From Compton Scattering on the Deuteron?
- Nucleon Polarizability Contribution to the Hydrogen Lamb Shift and Hydrogen -- Deuterium Isotope Shift
- Dispersive evaluation of the Lamb shift in muonic deuterium from chiral effective field theory
- Electric Dipole Polarizabilities of Hydrogen and Helium Isotopes
- Deuteron Dipole Polarizabilities and Sum Rules
- Sub Coulomb barrier d+Pb scattering in the time-dependent basis function approach
- Deuteron electric quadrupole and octupole polarizabilities
- Direct ab initio calculation of the He nuclear electric dipole polarizability
- Continuum coupled cluster expansion