Operator evolution for ab initio electric dipole transitions of He 4
2015; American Institute of Physics; Volume: 92; Issue: 1 Linguagem: Inglês
10.1103/physrevc.92.014320
ISSN1538-4497
AutoresMicah D. Schuster, Sofia Quaglioni, Calvin Johnson, Eric Jurgenson, P. Navrátil,
Tópico(s)Quantum, superfluid, helium dynamics
ResumoA goal of nuclear theory is to make quantitative predictions of low-energy nuclear observables starting from accurate microscopic internucleon forces. A major element of such an effort is applying unitary transformations to soften the nuclear Hamiltonian and hence accelerate the convergence of ab initio calculations as a function of the model space size. The consistent simultaneous transformation of external operators, however, has been overlooked in applications of the theory, particularly for nonscalar transitions. We study the evolution of the electric dipole operator in the framework of the similarity renormalization group method and apply the renormalized matrix elements to the calculation of the $^{4}\mathrm{He}$ total photoabsorption cross section and electric dipole polarizability. All observables are calculated within the ab initio no-core shell model. We find that, although seemingly small, the effects of evolved operators on the photoabsorption cross section are comparable in magnitude to the correction produced by including the chiral three-nucleon force and cannot be neglected.
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