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UID:20260415T203358EDT-2270svP6SD@132.216.98.100
DTSTAMP:20260416T003358Z
DESCRIPTION:Emergent structures in statistical mechanics and quantum system
 s\n\nEquilibrium states of classical and quantum systems can often be unde
 rstood in terms of spontaneously emergent structures. Examples can be seen
  in: i) the emergent fermionic and spinor degrees of freedom in planar mod
 els\, ii) the spontaneous organization of Ising and Potts spins into cliqu
 es\, whose statistics are given by the Fortuin-Kasteleyn random cluster mo
 dels\, iii) the random current representation of the equilibrium Gibbs sta
 tes of Ising and related field theoretic models\, and iv) loop based organ
 ization of certain quantum spin chains into clusters of total S^z=0 spin. 
 Uncovering the hidden stochastic geometric features allows insights on the
  model's phase structure\, the nature of its correlation functions\, and d
 etails of its critical behavior.\n	 \n
DTSTART:20180925T200000Z
DTEND:20180925T210000Z
LOCATION:Room 1140\, CA\, Pav. André-Aisenstadt
SUMMARY:Michael Aizenman\, Princeton University
URL:https://www.mcgill.ca/mathstat/channels/event/michael-aizenman-princeto
 n-university-289929
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