most citedCoupled-cluster theory for three-body Hamiltonians

192 citations · 694 across the 6 of their papers we have counts for

collaborators

5 papers

nucl-th200742 cited

Neutron matter at finite temperature

L. Tolos, B. Friman, A. Schwenk

We calculate the neutron matter equation of state at finite temperature based on low-momentum two- and three-nucleon interactions. The free energy is obtained from a loop expansion…

nucl-th2007134 cited

Convergence in the no-core shell model with low-momentum two-nucleon interactions

S. K. Bogner, R. J. Furnstahl, P. Maris +3

The convergence of no-core shell model (NCSM) calculations using renormalization group evolved low-momentum two-nucleon interactions is studied for light nuclei up to Li-7. Because…

nucl-th200789 cited

Benchmark calculations for 3H, 4He, 16O and 40Ca with ab-initio coupled-cluster theory

G. Hagen, D. J. Dean, M. Hjorth-Jensen +2

We present ab-initio calculations for 3H, 4He, 16O, and 40Ca based on two-nucleon low-momentum interactions Vlowk within coupled-cluster theory. For 3H and 4He, our results are wit…

nucl-th2007192 cited

Coupled-cluster theory for three-body Hamiltonians

G. Hagen, T. Papenbrock, D. J. Dean +4

We derive coupled-cluster equations for three-body Hamiltonians. The equations for the one- and two-body cluster amplitudes are presented in a factorized form that leads to an effi…

nucl-th200745 cited

Are low-energy nuclear observables sensitive to high-energy phase shifts?

S. K. Bogner, R. J. Furnstahl, R. J. Perry +1

Conventional nucleon-nucleon potentials with strong short-range repulsion require contributions from high-momentum wave function components even for low-energy observables such as…