activity
20182022
most citedThe Status and Future of Direct Nuclear Reaction Measurements for Stellar Burning

25 citations · 38 across the 3 of their papers we have counts for

collaborators

5 papers

nucl-ex202213 cited

Feasibility of studying astrophysically important charged-particle emission with the variable energy -ray system at the Extreme Light Infrastructure -- Nuclear Physics facility

H. Y. Lan, W. Luo, Y. Xu +8

In the environment of a hot plasma, as achieved in stellar explosions, capture and photodisintegration reactions proceeding on excited states in the nucleus can considerably contri…

nucl-ex202125 cited

The Status and Future of Direct Nuclear Reaction Measurements for Stellar Burning

M. Aliotta, R. Buompane, M. Couder +22

The study of stellar burning began just over 100 years ago. Nonetheless, we do not yet have a detailed picture of the nucleosynthesis within stars and how nucleosynthesis impacts s…

nucl-th2021

Systematical studies of the E1 photon strength functions combining Skyrme-HFB+QRPA model and experimental giant dipole resonance properties

Y. Xu, S. Goriely, E. Khan

Valuable theoretical predictions of nuclear dipole excitations in the whole nuclear chart are of great interest for different applications, including in particular nuclear astrophy…

nucl-th2018

Determination of the photodisintegration reaction rates involving charged particles: systematical calculations and proposed measurements based on Extreme Light Infrastructure - Nuclear Physics (ELI-NP)

H. Y. Lan, Y. Xu, W. Luo +14

Photodisintegration reaction rates involving charged particles are of relevance to the p-process nucleosynthesis that aims at explaining the production of the stable neutron-defici…

astro-ph.HE2018

Nuclear Reactions in the Crusts of Accreting Neutron Stars

R. Lau, M. Beard, S. S. Gupta +13

X-ray observations of transiently accreting neutron stars during quiescence provide information about the structure of neutron star crusts and the properties of dense matter. Inter…