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SUMMARY:Is the large uncertainty of δCP fundamentally encoded in the neut
 rino quantum state?
DTSTART:20260421T120000Z
DTEND:20260421T130000Z
DTSTAMP:20260426T073600Z
UID:indico-event-101@indico.zdv.uni-mainz.de
DESCRIPTION:Speakers: Claudia Frugiuele (INFN Milan)\n\nQuantum estimation
  theory provides a framework to quantify the ultimate precision limits for
  parameter estimation in physical systems. I will introduce its basic conc
 epts and apply them to neutrino oscillations\, focusing on the estimation 
 of the PMNS parameters.\nA central puzzle is why the CP\, violating phase 
 δCP remains significantly less constrained than the other mixing paramete
 rs. Using quantum estimation tools\, I will  show that this limitation i
 s not due to a lack of information encoded in the neutrino quantum state. 
 Instead\, it arises from the suboptimal nature of standard flavor measurem
 ents\, particularly near the first oscillation peak.\nI will discuss how o
 ptimized measurement strategies can improve sensitivity to δCP\, and comp
 are the achievable precision with that of other mixing parameters\, for wh
 ich current measurements are already close to optimal.\n\nhttps://indico.z
 dv.uni-mainz.de/event/101/
LOCATION:R. 05-127 (Lorentz-Room)
URL:https://indico.zdv.uni-mainz.de/event/101/
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