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VERSION:2.0
PRODID:Icfo
X-PUBLISHED-TTL:P1W
BEGIN:VEVENT
UID:6abaa0a8e025f
DTSTART:20241203T110000Z
SEQUENCE:0
TRANSP:OPAQUE
DTEND:20241203T120000Z
LOCATION:Seminar Room
SUMMARY:ICFO | VICTOR BARIZIEN 
CLASS:PUBLIC
DESCRIPTION:One of the most puzzling fact about quantum theory is that it p
 redicts nonlocal behaviors of nature. This naturally leads to ask whether 
 this property is just an artifact of the theory\, or if such observations 
 could actually be made. Answering such question led John S. Bell to develo
 p a framework allowing for the study of arbitrary theories solely based on
  the statistics they predict. As such\, quantum based predic- tions were u
 tilized to build experiments disqualifying any local theory of nature. Con
 versely\, studying the statistics obtainable in such experiments\, as well
  as the set formed by all quantum statistics\, has been shown to capture s
 ome of quantum theory&rsquo\;s core properties. However\, only partial des
 criptions of this set have been provided until now. In this presentation\,
  we will delve into the world of this quantum set\, studying its geometry 
 through the lens of self-testing\, a method that allows to infer the under
 lying physics of a quantum experiment when specific statistics are achieve
 d.
DTSTAMP:20260928T171520Z
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