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METHOD:PUBLISH
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X-ORIGINAL-URL:https://iqus.uw.edu/
X-WR-CALNAME:IQuS
X-WR-CALDESC:InQubator for Quantum Simulation
REFRESH-INTERVAL;VALUE=DURATION:PT1H
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BEGIN:VEVENT
CLASS:PUBLIC
UID:MEC-0c9ebb2ded806d7ffda75cd0b95eb70c@iqus.uw.edu
DTSTART:20230111T213000Z
DTEND:20230111T223000Z
DTSTAMP:20221105T052900Z
CREATED:20221104
LAST-MODIFIED:20230529
PRIORITY:5
SEQUENCE:0
TRANSP:OPAQUE
SUMMARY:From nanotech to living sensors: unraveling the spin physics of biosensing at the nanoscale
DESCRIPTION:Clarice D Aiello (UCLA)\n\nSubstantial in vitro and physiological experimental results suggest that similar coherent spin physics might underlie phenomena as varied as the biosensing of magnetic fields in animal navigation and the magnetosensitivity of metabolic reactions related to oxidative stress in cells. If this is correct, organisms might behave, for a short time, as “living quantum sensors” and might be studied and controlled using quantum sensing techniques developed for technological sensors. I will outline our approach towards performing coherent quantum measurements and control on proteins, cells and organisms in order to understand how they interact with their environment, and how physiology is regulated by such interactions. Can coherent spin physics be established – or refuted! – to account for physiologically relevant biosensing phenomena, and be manipulated to technological and therapeutic advantage?\n \n
URL:https://iqus.uw.edu/events/aiello/
CATEGORIES:Seminars
LOCATION:UW, 15th and Pacific, Seattle
ATTACH;FMTTYPE=image/jpeg:https://iqus.uw.edu/wp-content/uploads/2022/11/aiello.jpeg
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