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UID:42a3ef03abd3edbb3128e74ffda7efa1
CATEGORIES:Mathematical Physics Seminar
CREATED:20220928T160138
SUMMARY:Hydrodynamic quantum analogs
LOCATION:Hill Center Room 425
DESCRIPTION:In 2005, Yves Couder and Emmanuel Fort discovered that droplets walking on 
 a vibrating fluid bath exhibit several features previously thought to be ex
 clusive to the microscopic, quantum realm. These walking droplets are inarg
 uably an example of wave-particle duality on the macrocopic scale; moreover
 , they are the first macroscopic realization of a pilot-wave system of the 
 form proposed for microscopic quantum dynamics by Louis de Broglie in the 1
 920s. New experimental and theoretical results allow us to explore its pote
 ntial and limitations as a quantum analog. A generalized pilot-wave framewo
 rk is developed with a view to capturing additional quantum-like features i
 naccessible to the hydrodynamic system, and to forging links with existing 
 quantum pilot-wave theories. A fledgling, trajectory-based description of q
 uantum dynamics, informed by the hydrodynamic system, is explored. Particul
 ar attention is given to illustrating how the non-Markovian droplet dynamic
 s may give rise to features that might be misinferred as being nonlocal.\n
X-ALT-DESC;FMTTYPE=text/html:<p>In 2005, Yves Couder and Emmanuel Fort discovered that droplets walking 
 on a vibrating fluid bath exhibit several features previously thought to be
  exclusive to the microscopic, quantum realm. These walking droplets are in
 arguably an example of wave-particle duality on the macrocopic scale; moreo
 ver, they are the first macroscopic realization of a pilot-wave system of t
 he form proposed for microscopic quantum dynamics by Louis de Broglie in th
 e 1920s. New experimental and theoretical results allow us to explore its p
 otential and limitations as a quantum analog. A generalized pilot-wave fram
 ework is developed with a view to capturing additional quantum-like feature
 s inaccessible to the hydrodynamic system, and to forging links with existi
 ng quantum pilot-wave theories. A fledgling, trajectory-based description o
 f quantum dynamics, informed by the hydrodynamic system, is explored. Parti
 cular attention is given to illustrating how the non-Markovian droplet dyna
 mics may give rise to features that might be misinferred as being nonlocal.
 </p>
CONTACT:John Bush - MIT
DTSTAMP:20260826T211418
DTSTART;TZID=America/New_York:20220929T140000
DTEND;TZID=America/New_York:20220929T150000
SEQUENCE:0
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