Nuclear Reactions and Superfluid Time Dependent Density Functional Theory
arXiv:1606.02225 · doi:10.2174/9781681087641119020008
Abstract
The extension of Time Dependent Density Functional Theory (TDDFT) to superfluid systems is discussed in the context of nuclear reactions and large amplitude collective motion.
15 pages, to be published in the ebook "Progress of time-dependent nuclear reaction theory" (Betham Science Publishers 2019) honoring Prof. Joachim Maruhn's retirement
Cited by in corpus (9)
- TDHF Theory and Its Extensions for the Multinucleon Transfer Reaction: a Mini Review
- Novel Role of Superfluidity in Low-Energy Nuclear Reactions
- Properties of a quantum vortex in neutron matter
- Quantum vortices in fermionic superfluids: from ultracold atoms to neutron stars
- Quasifission dynamics and stability of superheavy systems
- Solitonic excitations in collisions of superfluid nuclei: a qualitatively new phenomenon distinct from the Josephson effect
- Time-dependent nuclear energy-density functional theory toolkit for neutron star crust: Dynamics of a nucleus in a neutron superfluid
- Pairing dynamics and time dependent density functional theory
- Microscopic Calculations of Vortex-Nucleus Interaction in the Neutron Star Crust