TY - JOUR
AU - Le, Hoai
AU - Haidenbauer, Johann
AU - Meißner, Ulf-G.
AU - Nogga, Andreas
TI - S-shell $\varLambda \varLambda$ hypernuclei based on chiral interactions
JO - The European physical journal / A
VL - 57
IS - 7
SN - 1434-601X
CY - Heidelberg
PB - Springer
M1 - FZJ-2021-03676
SP - 217
PY - 2021
AB - We generalize the Jacobi no-core shell model (J-NCSM) to study double-strangeness hypernuclei. All particle conversions in the strangeness S=−1,−2 sectors are explicitly taken into account. In two-body space, such transitions may lead to the coupling between states of identical particles and of non-identical ones. Therefore, a careful consideration is required when determining the combinatorial factors that connect the many-body potential matrix elements and the free-space two-body potentials. Using second quantization, we systematically derive the combinatorial factors in question for S=0,−1,−2 sectors. As a first application, we use the J-NCSM to investigate ΛΛ s-shell hypernuclei based on hyperon-hyperon (YY) potentials derived within chiral effective field theory at leading order (LO) and up to next-to-leading order (NLO). We find that the LO potential overbinds 6ΛΛHe while the prediction of the NLO interaction is close to experiment. Both interactions also yield a bound state for 5ΛΛHe. The 4ΛΛH system is predicted to be unbound.
LB - PUB:(DE-HGF)16
UR - <Go to ISI:>//WOS:000669211800001
DO - DOI:10.1140/epja/s10050-021-00522-8
UR - https://juser.fz-juelich.de/record/897210
ER -