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METHOD:PUBLISH
CALSCALE:GREGORIAN
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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-dbbf603ff0e99629dda5d75b6f75f966@iqus.uw.edu
DTSTART:20241120T213000Z
DTEND:20241120T223000Z
DTSTAMP:20240912T165900Z
CREATED:20240912
LAST-MODIFIED:20241121
PRIORITY:5
SEQUENCE:11
TRANSP:OPAQUE
SUMMARY:Universal Euler-Cartan Circuits for Quantum Field Theories
DESCRIPTION:\nAnanda Roy, Rutgers University\nQuantum computers can efficiently solve problems which are widely believed to lie beyond the reach of classical computers. In the near-term, hybrid quantum-classical algorithms, which efficiently embed quantum hardware in classical frameworks, are crucial in bridging the vast divide in the performance of the purely-quantum algorithms and their classical counterparts. Here, a hybrid quantum-classical algorithm is presented for the computation of non-perturbative characteristics of quantum field theories. The presented algorithm relies on a universal parametrized quantum circuit ansatz based on Euler and Cartan’s decompositions of single and two-qubit operators. It is benchmarked by computing the energy spectra of lattice realizations of quantum field theories with both short and long range interactions. Low depth circuits are provided for false vacua as well as highly excited states corresponding to mesonic and baryonic excitations occurring in the analyzed models. The described algorithm opens a hitherto-unexplored avenue for the investigation of mass-ratios, scattering amplitudes and false-vacuum decays in quantum field theories.\n\n\n
URL:https://iqus.uw.edu/events/ananda-roy-20nov2024/
ORGANIZER;CN=Niklas Mueller:MAILTO:niklasmu@uw.edu
CATEGORIES:Seminars
LOCATION:UW, 15th and Pacific, Seattle
ATTACH;FMTTYPE=image/jpeg:https://iqus.uw.edu/wp-content/uploads/2024/09/ananda_roy.jpeg
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