Shell model calculations discover a low-energy M1 radiation spike (LEMAR) from proton-neutron high-j orbital recoupling that boosts r-process reaction rates by a factor of 2.5 in A≈132 nuclei and follows Planck's law.
Title resolution pending
2 Pith papers cite this work. Polarity classification is still indexing.
2
Pith papers citing it
fields
nucl-th 2years
2019 2verdicts
UNVERDICTED 2representative citing papers
Multicranked configuration mixing with angular-momentum and particle-number projection describes superdeformed bands in 152Dy and 194Hg using the Gogny D1S force.
citing papers explorer
-
Low-Energy Magnetic Radiation
Shell model calculations discover a low-energy M1 radiation spike (LEMAR) from proton-neutron high-j orbital recoupling that boosts r-process reaction rates by a factor of 2.5 in A≈132 nuclei and follows Planck's law.
-
Importance of multicranked configuration mixing for angular-momentum-projection calculations: Study of superdeformed rotational bands in $^{152}$Dy and $^{194}$Hg
Multicranked configuration mixing with angular-momentum and particle-number projection describes superdeformed bands in 152Dy and 194Hg using the Gogny D1S force.