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5 papers · 2 filters
Improved nuclear matter calculations from chiral low-momentum interactions
K. Hebeler, S. K. Bogner, R. J. Furnstahl +2
We present new nuclear matter calculations based on low-momentum interactions derived from chiral effective field theory potentials. The current calculations use an improved treatm…
Evolving Nuclear Many-Body Forces with the Similarity Renormalization Group
E. D. Jurgenson, P. Navratil, R. J. Furnstahl
In recent years, the Similarity Renormalization Group has provided a powerful and versatile means to soften interactions for ab initio nuclear calculations. The substantial contrib…
Constraints on neutron star radii based on chiral effective field theory interactions
K. Hebeler, J. M. Lattimer, C. J. Pethick +1
We show that microscopic calculations based on chiral effective field theory interactions constrain the properties of neutron-rich matter below nuclear densities to a much higher d…
In-Medium Similarity Renormalization Group for Nuclei
K. Tsukiyama, S. K. Bogner, A. Schwenk
We present a new ab-initio method that uses similarity renormalization group (SRG) techniques to continuously diagonalize nuclear many-body Hamiltonians. In contrast with applicati…
Electroweak reactions with light nuclei
Sonia Bacca
The investigation of light nuclei with ab-initio methods provides an optimal setting to probe our knowledge on nuclear forces, because the few-nucleon problem can be solved accurat…