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Entanglement in few-nucleon scattering events
T Kirchner, W Elkamhawy, HW Hammer - Few-Body Systems, 2024 - Springer
We investigate the spin entanglement in few-nucleon scattering processes involving
nucleons and deuterons. For this purpose, we consider the entanglement power introduced …
nucleons and deuterons. For this purpose, we consider the entanglement power introduced …
Erratum: Description of the Proton-Decaying Resonance of the Particle [Phys. Rev. Lett. 131, 242502 (2023)]
N Michel, W Nazarewicz, M Płoszajczak - Physical Review Letters, 2024 - APS
As pointed out by P. Yin, H. Li, AM Shirokov, X. Zhao, and JP Vary, due to the incorrect
normalization of the charge density, our definition of the monopole form factor Frel (q2) was …
normalization of the charge density, our definition of the monopole form factor Frel (q2) was …
Study of the alpha-particle monopole transition form factor
The 4 He monopole form factor is studied by computing the transition matrix element of the
electromagnetic charge operator between the 4 He ground-state and the p+ 3 H and n+ 3 …
electromagnetic charge operator between the 4 He ground-state and the p+ 3 H and n+ 3 …
Worldline Monte Carlo method for few-body nuclear physics
In this work we introduce a worldline-based fermion Monte Carlo algorithm for studying few
body quantum mechanics of self-interacting fermions in the Hamiltonian lattice formulation …
body quantum mechanics of self-interacting fermions in the Hamiltonian lattice formulation …
parity-conserving asymmetry
Recently, the n He 3 Collaboration reported a measurement of the parity-violating (PV)
proton directional asymmetry A PV=[1.55±0.97 (stat)±0.24 (sys)]× 10− 8 in the capture …
proton directional asymmetry A PV=[1.55±0.97 (stat)±0.24 (sys)]× 10− 8 in the capture …
Perturbative quantum Monte Carlo calculation with high-fidelity nuclear forces
J Liu, T Wang, BN Lu - arxiv preprint arxiv:2502.13565, 2025 - arxiv.org
Quantum Monte Carlo (QMC) is a family of powerful tools for addressing quantum many-
body problems. However, its applications are often plagued by the fermionic sign problem. A …
body problems. However, its applications are often plagued by the fermionic sign problem. A …
Hyper-neutron stars from an ab initio calculation
The equation of state (EoS) of neutron matter plays a decisive role to understand the neutron
star properties and the gravitational waves from neutron star mergers. At sufficient densities …
star properties and the gravitational waves from neutron star mergers. At sufficient densities …
Chiral dynamics: Quo vadis?
UG Meißner - arxiv preprint arxiv:2501.03014, 2025 - arxiv.org
arxiv:2501.03014v1 [hep-ph] 6 Jan 2025 Page 1 Chiral dynamics: Quo vadis ? Ulf-G.
Meißner𝑎,𝑏,𝑐,∗ 𝑎Helmholtz-Institut für Strahlen- und Kernphysik and Bethe Center for …
Meißner𝑎,𝑏,𝑐,∗ 𝑎Helmholtz-Institut für Strahlen- und Kernphysik and Bethe Center for …
Alpha-Particle Monopole Form Factors with Ab Initio No-Core Shell Model
The state-of-the-art ab initio nuclear many-body approaches with modern nuclear forces are
challenged by the recent experimental measurement of the monopole form factor of the $0^+ …
challenged by the recent experimental measurement of the monopole form factor of the $0^+ …
Lattice Effective Field Theory Simulations of Nuclei
D Lee - arxiv preprint arxiv:2501.03303, 2025 - arxiv.org
Lattice effective field theory applies the principles of effective field theory in a lattice
framework where space and time are discretized. Nucleons are placed on the lattice sites …
framework where space and time are discretized. Nucleons are placed on the lattice sites …