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SUMMARY:Nuclear giant resonances studied by a self-consistent Skyrme quasi
 particle vibration coupling approach
DTSTART;VALUE=DATE-TIME:20240530T093000Z
DTEND;VALUE=DATE-TIME:20240530T100000Z
DTSTAMP;VALUE=DATE-TIME:20260517T054905Z
UID:indico-contribution-23766@indico.ific.uv.es
DESCRIPTION:Speakers: Yifei Niu (Lanzhou University\, P. R. China)\nNuclea
 r giant resonances provide deep insight in understanding the structure of 
 atomic nuclei as well as constraining the nuclear equation of state (EoS).
  The giant monopole resonance (GMR) and giant dipole resonance (GDR) provi
 de effective constraints on nuclear incompressibility and symmetry energy 
 slope parameter\, respectively. The giant quadrupole resonance (GQR) gives
  useful information on nucleon effective mass. The quasiparticle random ph
 ase approximation (QRPA) model is the most commonly used microscopic model
  to study the giant resonances of atomic nuclei. However\, due to the lack
  of higher-order many-body correlations beyond the mean field\, the resona
 nce width cannot be given\, and serious problems are encountered when desc
 ribing the GMR energies. In this talk\, I will introduce how to solve the 
 above problems by developing a self-consistent quasiparticle random phase 
 approximation + quasiparticle vibration coupling model based on Skyrme den
 sity functional which considers higher-order many-body correlations. Furth
 ermore\, facing to various modes of nuclear giant resonances\, the photonu
 clear reaction is only limited to the study of nuclear dipole excitations\
 , so I will discuss new possibilities to excite different modes of nuclear
  giant resonances with vortex photons.\n\nhttps://indico.ific.uv.es/event/
 7332/contributions/23766/
LOCATION:ADEIT - Valencia
URL:https://indico.ific.uv.es/event/7332/contributions/23766/
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