We present theoretical ground state energies and their uncertainties for p-shell nuclei obtained from chiral effective field theory internucleon interactions as a function of chiral order, fitted to two- and three-body data only. We apply a Similary Renormalization Group transformation to improve the numerical convergence of the many-body calculations, and discuss both the numerical uncertainties arising from basis truncations and those from omitted induced many-body forces, as well as chiral truncation uncertainties. With complete Next-to-Next-to-Leading (N2LO) order two- and three-body interactions, we find significant overbinding for the ground states in the upper p-shell, but using higher-order two-body potentials, in combination with N...
Recent developments in theoretical Nuclear Physics offer new effective tools that improve the predic...
We report accurate quantum Monte Carlo calculations of nuclei up to A=16 based on local chiral two- ...
Chiral effective field theory allows for a systematically improvable construction of nuclear interac...
We present theoretical ground state energies and their uncertainties for p-shell nuclei obtained fro...
Nuclear interactions derived within chiral effective field theory enable nuclear structure and react...
Chiral effective field theory provides nuclear interactions rooted in Quantum Chromodynamics in a sy...
Based on the fundamental symmetries of QCD, chiral effective field theory (EFT) provides two-(NN), t...
Low-energy nuclear theory has entered an era of ab initio nuclear structure and reaction calculation...
The prediction of nuclear structure and reaction observables based on nuclear Hamil- tonians includi...
The nuclear force is a residual interaction between bound states of quarks and gluons. The most fund...
In this Thesis, we study nuclear reactions and interactions for heavy nuclei based on chiral effecti...
In recent years local chiral interactions have been derived and implemented in quantum Monte Carlo m...
Chiral effective field theory (χEFT) provides a systematic approach to describe low-energy nuclear f...
Realistic nuclear potentials, derived within chiral perturbation theory, are a major breakthrough in...
Ab initio calculations of nuclei from the valley of stability to the drip lines are a prime challeng...
Recent developments in theoretical Nuclear Physics offer new effective tools that improve the predic...
We report accurate quantum Monte Carlo calculations of nuclei up to A=16 based on local chiral two- ...
Chiral effective field theory allows for a systematically improvable construction of nuclear interac...
We present theoretical ground state energies and their uncertainties for p-shell nuclei obtained fro...
Nuclear interactions derived within chiral effective field theory enable nuclear structure and react...
Chiral effective field theory provides nuclear interactions rooted in Quantum Chromodynamics in a sy...
Based on the fundamental symmetries of QCD, chiral effective field theory (EFT) provides two-(NN), t...
Low-energy nuclear theory has entered an era of ab initio nuclear structure and reaction calculation...
The prediction of nuclear structure and reaction observables based on nuclear Hamil- tonians includi...
The nuclear force is a residual interaction between bound states of quarks and gluons. The most fund...
In this Thesis, we study nuclear reactions and interactions for heavy nuclei based on chiral effecti...
In recent years local chiral interactions have been derived and implemented in quantum Monte Carlo m...
Chiral effective field theory (χEFT) provides a systematic approach to describe low-energy nuclear f...
Realistic nuclear potentials, derived within chiral perturbation theory, are a major breakthrough in...
Ab initio calculations of nuclei from the valley of stability to the drip lines are a prime challeng...
Recent developments in theoretical Nuclear Physics offer new effective tools that improve the predic...
We report accurate quantum Monte Carlo calculations of nuclei up to A=16 based on local chiral two- ...
Chiral effective field theory allows for a systematically improvable construction of nuclear interac...