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BEGIN:VEVENT

CATEGORIES:Engineering
CATEGORIES:Natural Sciences
CATEGORIES:Lectures/Conferences
CATEGORIES:Utilities
CATEGORIES:Panel/Seminar/Colloquium
CATEGORIES:Main
CONTACT;X-BEDEWORK-UID=8a0870ee-48a75713-0148-a8c93d00-000067e1:Ginsberg\,
  Margo
CREATED:20260106T205625Z
DESCRIPTION:Abstract: As quantum processors approach regimes that challeng
 e the best available classical methods\, the ability to handle errors bec
 omes critical for unlocking their full potential. Error mitigation is ess
 ential for obtaining accurate results from large scales on both today's d
 evices and future error-corrected architectures. Yet\, most existing appr
 oaches either rely on uncontrolled heuristics or require prohibitive QPU 
 time that makes them impractical for large-scale circuit execution. In th
 is talk\, I will introduce QESEM\, a quantum error suppression and error 
 mitigation software designed to deliver accurate and reliable results fro
 m large-scale quantum circuits. I will present recent results obtained wi
 th QESEM across diverse applications and describe its core innovations an
 d inner workings. I will also discuss how integrating error-mitigated qua
 ntum processors with high-performance classical computing further extends
  the range and scale of accessible use-cases. Looking ahead\, I will argu
 e that error mitigation methods will likely be the first to enable quantu
 m advantage and will remain essential once error correction becomes viabl
 e. I will conclude with a perspective on QESEM's projected performance on
  near-term and future error-corrected devices\, and its implications for 
 scaling toward practical quantum advantage.\n\nBIO: Netanel Lindner is a 
 professor of theoretical physics at the Technion - Israel Institute of Te
 chnology\, and Chief Technology Officer and Co-Founder of Qedma. He recei
 ved his Ph.D. from the Technion. In 2019\, he started a postdoctoral posi
 tion at Caltech\, and in 2013\, he joined the faculty of the Physics Depa
 rtment at the Technion. Netanel made pioneering contributions in a wide r
 ange of fields\, including photonic and topological quantum computing and
  topological phenomena in non-equilibrium quantum matter\, and received s
 everal important awards\, including the Clore Fellowship\, Rothschild Fel
 lowship\, the Krill prize by the Wolf foundation\, Marie Curie integratio
 n grant\, the DIP German-Israeli Project Cooperation Grant\, and the ERC 
 starter grant. In 2020\, Netanel co-founded Qedma\, a startup company dev
 eloping software solutions for eliminating the effects of errors in quant
 um computers.
DURATION:PT1H
DTSTAMP:20260106T211309Z
DTSTART;TZID=America/New_York:20260106T150000
LAST-MODIFIED:20260106T211309Z
LOCATION;X-BEDEWORK-UID=8a039360-81409ef1-0182-124440ea-000060f6:4700 Ches
 terfield\, 701 W Main Street
STATUS:CONFIRMED
SUMMARY:Triangle Quantum Computing Seminar Series: Reliable High-Accuracy 
 Error Mitigation for Large-Scale Quantum Circuits
UID:CAL-8a00eca5-9af98aae-019b-9518bd8e-000047c2demobedework@mysite.edu
X-BEDEWORK-ALIAS;X-BEDEWORK-PARAM-DISPLAYNAME=Main:/user/public-user/Utili
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 r/Topics/Engineering
X-BEDEWORK-ALIAS;X-BEDEWORK-PARAM-DISPLAYNAME=Natural Sciences:/user/publi
 c-user/Topics/Natural Sciences
X-BEDEWORK-SPEAKER:Netanel Lindner\, Professor of Theoretical Physics at T
 he Technion – Israel Institute of Technology\, and Chief Technology Offic
 er and Co-Founder of Qedma
X-BEDEWORK-DUKE-SERIES:Triangle Quantum Computing Seminar Series
X-BEDEWORK-SUBMITTEDBY:mfg20 for Duke Quantum Center (agrp_DQC)
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X-BEDEWORK-IMAGE-ALT-TEXT:20260116 Triangle Quantum Seminar Series
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END:VEVENT
BEGIN:VEVENT

RECURRENCE-ID;TZID=America/New_York:20260417T140000
CATEGORIES:Engineering
CATEGORIES:Natural Sciences
CATEGORIES:Lectures/Conferences
CATEGORIES:Utilities
CATEGORIES:Panel/Seminar/Colloquium
CATEGORIES:Main
CONTACT;X-BEDEWORK-UID=8a0870ee-48a75713-0148-a8c93d00-000067e1:Ginsberg\,
  Margo
CREATED:20260108T202048Z
DESCRIPTION:Abstract: Reconfiguring\, modulating and processing light at v
 isible wavelengths typically requires complex and bulky table-top optics.
  High resolution optical applications such as optogenetic neural studies\
 , fluorescence microscopy\, and quantum information systems have a growin
 g need for compact and efficient platforms that can control and readout l
 arge numbers of optical channels. However\, in the visible wavelength ran
 ge\, where key optical transitions lie\, this is a significant challenge 
 because the traditional silicon photonics chip-scale platforms cannot be 
 leveraged due to fundamental material absorption limits. Silicon nitride 
 has been demonstrated as a foundry-compatible\, low-loss photonic platfor
 m operating down to 400 nm wavelength through optimized fabrication proce
 sses and mode engineering. The platform's recent demonstrations in switch
 ing networks\, optical phased arrays\, and active modulation show its pot
 ential as an excellent interface between light and optically addressable 
 atoms or cells. This talk will highlight recent work in silicon nitride v
 isible photonic integrated circuits on mode-multiplexing structures for h
 igh resolution beam shaping and structuring from multimode waveguides and
  compact on-chip apertures.\n\nBio: Aseema Mohanty is the Clare Boothe Lu
 ce Assistant Professor in Electrical and Computer Engineering at Tufts Un
 iversity. She received her B.S. degree from the Massachusetts Institute o
 f Technology and Ph.D. from Cornell University. During her postdoctoral w
 ork at Columbia University\, she developed an implantable neural probe ba
 sed on visible photonic integrated circuits for sub-millisecond and singl
 e-cell neural stimulation and readout. Her research focuses on using nano
 photonics and engineered light-matter interactions to create miniaturized
  high performance optical circuits to control\, shape\, and sense light. 
 Her interest in chip-scale optical devices broadly span the fields of neu
 roscience\, implantable and wearable biomedical sensors\, 3D optical beam
  shaping\, quantum information and emerging computing and communication s
 ystems. Her work has been published in Nature Photonics\, Nature Biomedic
 al Engineering\, Nature Communications and received the NSF CAREER in 202
 5.\n--\nCo-hosted by the Duke Quantum Center\, the NC State Quantum Initi
 ative\, and the UNC Kenan-Flagler's Rethinc. Labs.
DURATION:PT1H
DTSTAMP:20260416T194900Z
DTSTART;TZID=America/New_York:20260417T140000
LAST-MODIFIED:20260416T194900Z
LOCATION;X-BEDEWORK-UID=8a039360-81409ef1-0182-124440ea-000060f6:4700 Ches
 terfield\, 701 W Main Street
STATUS:CONFIRMED
SUMMARY:Triangle Quantum Computing Seminar Series: Visible photonic integr
 ated circuits: From neuroscience to quantum applications
UID:CAL-8a00eca5-9af98aae-019b-9f44dd5c-00001d97demobedework@mysite.edu
URL:https://duke.zoom.us/j/96112390048?pwd=enJHZVNMTGFlbVduQ3RUcjMrWlo4Zz0
 9
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X-BEDEWORK-ALIAS;X-BEDEWORK-PARAM-DISPLAYNAME=Engineering:/user/public-use
 r/Topics/Engineering
X-BEDEWORK-DUKE-SERIES:Triangle Quantum Computing Seminar Series
X-BEDEWORK-SUBMITTEDBY:mfg20 for Duke Quantum Center (agrp_DQC)
X-BEDEWORK-SPEAKER:Aseema Mohanty\, Clare Boothe Luce Assistant Professor\
 , Electrical and Computer Engineering\, Tufts University
X-BEDEWORK-LOCATION:2908-2909\, Chesterfield Building
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END:VEVENT
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