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SUMMARY:Topical seminar: "Strongly correlated systems with neural quantum 
 states"
DTSTART;VALUE=DATE-TIME:20260211T110000Z
DTEND;VALUE=DATE-TIME:20260211T130000Z
DTSTAMP;VALUE=DATE-TIME:20260309T083213Z
UID:indico-event-8414@indico.ific.uv.es
DESCRIPTION:Strongly correlated quantum systems pose a central challenge a
 cross nuclear and condensed-matter physics: their collective behavior emer
 ges from interactions that are too strong and complex for mean-field or pe
 rturbative approaches\, and their many-body wave functions live in exponen
 tially large spaces.\n\nIn this talk\, I will introduce neural quantum sta
 tes (NQS) as a flexible variational framework for representing and optimiz
 ing many-body wave functions in systems with both continuous and discrete 
 degrees of freedom. After briefly reviewing the variational Monte Carlo me
 thod\, I will show how modern neural-network architectures can encode high
 -dimensional correlations\, fermionic antisymmetry\, and physical symmetri
 es directly into the wave function ansatz.\n\nI will then highlight recent
  applications of NQS to strongly correlated systems\, including ultracold 
 Fermi gases\, neutron-star matter\, and atomic nuclei. These examples illu
 strate how a common computational framework can describe pairing\, cluster
 ing\, and long-range correlations across traditionally separate subfields.
 \n\nhttps://indico.ific.uv.es/event/8414/
LOCATION:Universe 1001-Primera-1-1-1 - Paterna. Seminario
URL:https://indico.ific.uv.es/event/8414/
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