activity
20062009
most citedSimilarity Renormalization Group for Nucleon-Nucleon Interactions

468 citations · 828 across the 6 of their papers we have counts for

collaborators

6 papers

nucl-th2009221 cited

Evolution of Nuclear Many-Body Forces with the Similarity Renormalization Group

E. D. Jurgenson, P. Navratil, R. J. Furnstahl

The first practical method to evolve many-body nuclear forces to softened form using the Similarity Renormalization Group (SRG) in a harmonic oscillator basis is demonstrated. When…

nucl-th200912 cited

Nuclear matter from chiral low-momentum interactions

S. K. Bogner, R. J. Furnstahl, A. Nogga +1

Nuclear matter calculations based on low-momentum interactions derived from chiral nucleon-nucleon and three-nucleon effective field theory interactions and fit only to few-body da…

nucl-th200826 cited

Similarity Renormalization Group Evolution of Many-Body Forces in a One-Dimensional Model

E. D. Jurgenson, R. J. Furnstahl

A one-dimensional system of bosons with short-range repulsion and mid-range attraction is used as a laboratory to explore the evolution of many-body forces by the Similarity Renorm…

nucl-th20073 cited

Similarity Renormalization Group for Few-Body Systems

R. J. Furnstahl

Internucleon interactions evolved via flow equations yield soft potentials that lead to rapid variational convergence in few-body systems.

nucl-th2006468 cited

Similarity Renormalization Group for Nucleon-Nucleon Interactions

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

The similarity renormalization group (SRG) is based on unitary transformations that suppress off-diagonal matrix elements, forcing the hamiltonian towards a band-diagonal form. A s…

nucl-th200698 cited

Low-momentum interactions with smooth cutoffs

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

Nucleon-nucleon potentials evolved to low momentum, which show great promise in few- and many-body calculations, have generally been formulated with a sharp cutoff on relative mome…