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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
X-PUBLISHED-TTL:PT1H
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BEGIN:VEVENT
CLASS:PUBLIC
UID:MEC-9aeade7beada35c83d3b344fbafe43b0@iqus.uw.edu
DTSTART:20250528T203000Z
DTEND:20250528T213000Z
DTSTAMP:20250510T023600Z
CREATED:20250509
LAST-MODIFIED:20250525
PRIORITY:5
SEQUENCE:4
TRANSP:OPAQUE
SUMMARY:Approaching the Continuum Limit of Gauge Theories on Quantum Computers
DESCRIPTION:\nMarc Illa, InQubator for Quantum Simulation, University of Washington\nIn this talk, I will present novel strategies to approach the continuum limit of lattice gauge theories on quantum hardware by combining classically improved Hamiltonians with state-dependent quantum corrections. Specifically, we develop and analyze Kogut-Susskind-type Hamiltonians on honeycomb and hyper-honeycomb spatial lattices, which minimize plaquette operator complexity by involving only three-link vertices. These constructions are enhanced through quantum tadpole improvements, where we explore the emergence of spacetime-dependent renormalizations in real-time simulations, highlighting the need for coefficient updates that depend on the current quantum state. Together, these developments mark significant steps toward scalable and accurate quantum simulations of gauge theories.\n
URL:https://iqus.uw.edu/events/marc-illa-25may2025/
ORGANIZER;CN=Xiaojun Yao:MAILTO:xjyao@uw.edu
CATEGORIES:Seminars
LOCATION:UW, 15th and Pacific, Seattle
ATTACH;FMTTYPE=image/png:https://iqus.uw.edu/wp-content/uploads/2025/05/Screenshot-2025-05-09-at-8.30.33 PM.png
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