Renormalization group and Fermi liquid theory for many-nucleon systems
arXiv:1201.2510 · doi:10.1007/978-3-642-27320-9_5
Abstract
We discuss renormalization group approaches to strongly interacting Fermi systems, in the context of Landau's theory of Fermi liquids and functional methods, and their application to neutron matter.
40 pages, 23 figures, updated lectures given at ECT*, to appear in Springer Lecture Notes in Physics
References in corpus (16)
- Exact evolution equation for the effective potential
- Functional renormalization group approach to correlated fermion systems
- Rapid Cooling of the Neutron Star in Cassiopeia A Triggered by Neutron Superfluidity in Dense Matter
- Similarity Renormalization Group for Nucleon-Nucleon Interactions
- Cooling neutron star in the Cassiopeia~A supernova remnant: Evidence for superfluidity in the core
- In-Medium Similarity Renormalization Group for Nuclei
- Screening Effects in Superfluid Nuclear and Neutron Matter within Brueckner Theory
- Cooling of Neutron Stars. Hadronic Model
- Cooling of the quasi-persistent neutron star X-ray transients KS 1731-260 and MXB 1659-29
- Cooling of the crust in the neutron star low-mass X-ray binary MXB 1659-29
- Convergence of the Born Series with Low-Momentum Interactions
- Dependence of the BCS 1S0 superfluid pairing gap on nuclear interactions
- Renormalization group approach to interacting fermion systems in the two-particle-irreducible formalism
- Second-order quasiparticle interaction in nuclear matter with chiral two-nucleon interactions
- Chiral three-nucleon forces and pairing in nuclei
- Quasi-particle interaction in nuclear matter from chiral pion-nucleon dynamics
Cited by in corpus (7)
- Nuclear chiral dynamics and thermodynamics
- The low lying modes of triplet-condensed neutron matter and their effective theory
- Landau-Migdal vs. Skyrme
- Fermi liquid theory: A brief survey in memory of Gerald E. Brown
- Deconfinement Phase Transition with External Magnetic Field in Friedberg-Lee Model
- Transport coefficients of dense nucleon matter at low temperature
- Multicomponent Fermi systems at low densities