The energy levels of light hypernuclei are experimentally accessible observables that contain valuable information about the interaction between hyperons and nucleons. In this work we study strangeness S=-1 systems HΛ3,4 and HeΛ4,5 using the ab initio no-core shell model (NCSM) with realistic interactions obtained from chiral effective field theory (χEFT). In particular, we quantify the finite precision of theoretical predictions that can be attributed to nuclear physics uncertainties. We study both the convergence of the solution of the many-body problem (method uncertainty) and the regulator and calibration-data dependence of the nuclear χEFT Hamiltonian (model uncertainty). For the former, we implement infrared correction formulas and ex...
The hypernuclei Λ4He and Λ4H provide important information on the hyperon-nucleon interaction. We pr...
The binding energies of a range of nuclei and hypernuclei with atomic number A \u3c = 4 and strangen...
The binding energies of a range of nuclei and hypernuclei with atomic number A \u3c = 4 and strangen...
The energy levels of light hypernuclei are experimentally accessible observables that contain valuab...
The hypertriton bound state is relevant for inference of knowledge about the hyperon–nucleon (YN) in...
Studying systems with strangeness provides a unique opportunity to deepen our understanding of the s...
Studying systems with strangeness provides a unique opportunity to deepen our understanding of the s...
We extend the no-core shell model (NCSM) methodology to incorporate strangeness degrees of freedom a...
A nonperturbative field theoretic calculation has been made for the $s$-shell hypernuclei. Here we d...
The binding energies of a range of nuclei and hypernuclei with atomic number A ≤ 4 and strangeness |...
Studying systems with strangeness provides a unique opportunity to deepen our understanding of the s...
Studying systems with strangeness provides a unique opportunity to deepen our understanding of the s...
Studying systems with strangeness provides a unique opportunity to deepen our understanding of the s...
Studying systems with strangeness provides a unique opportunity to deepen our understanding of the s...
Studying systems with strangeness provides a unique opportunity to deepen our understanding of the s...
The hypernuclei Λ4He and Λ4H provide important information on the hyperon-nucleon interaction. We pr...
The binding energies of a range of nuclei and hypernuclei with atomic number A \u3c = 4 and strangen...
The binding energies of a range of nuclei and hypernuclei with atomic number A \u3c = 4 and strangen...
The energy levels of light hypernuclei are experimentally accessible observables that contain valuab...
The hypertriton bound state is relevant for inference of knowledge about the hyperon–nucleon (YN) in...
Studying systems with strangeness provides a unique opportunity to deepen our understanding of the s...
Studying systems with strangeness provides a unique opportunity to deepen our understanding of the s...
We extend the no-core shell model (NCSM) methodology to incorporate strangeness degrees of freedom a...
A nonperturbative field theoretic calculation has been made for the $s$-shell hypernuclei. Here we d...
The binding energies of a range of nuclei and hypernuclei with atomic number A ≤ 4 and strangeness |...
Studying systems with strangeness provides a unique opportunity to deepen our understanding of the s...
Studying systems with strangeness provides a unique opportunity to deepen our understanding of the s...
Studying systems with strangeness provides a unique opportunity to deepen our understanding of the s...
Studying systems with strangeness provides a unique opportunity to deepen our understanding of the s...
Studying systems with strangeness provides a unique opportunity to deepen our understanding of the s...
The hypernuclei Λ4He and Λ4H provide important information on the hyperon-nucleon interaction. We pr...
The binding energies of a range of nuclei and hypernuclei with atomic number A \u3c = 4 and strangen...
The binding energies of a range of nuclei and hypernuclei with atomic number A \u3c = 4 and strangen...