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Research
Latest papers
Optimal Twirling Depth for Classical Shadows in the Presence of Noise.
Physical review letters · 2024 · senior author
Anomalous electronic transport in high-mobility Corbino rings.
Nature communications · 2023
Dynamical Enhancement of Symmetries in Many-Body Systems.
Physical review letters · 2020 · first author
Latest funding
- $145,000
Probing novel out-of-equilibrium dynamics and new phases in quantum systems
NSERC · 2019 · Principal investigator
- $12,500
Probing novel out-of-equilibrium dynamics and new phases in quantum systems
NSERC · 2019 · Principal investigator
4 publications.
Optimal Twirling Depth for Classical Shadows in the Presence of Noise.
Rozon PG, Bao N, Agarwal K
Anomalous electronic transport in high-mobility Corbino rings.
Vijayakrishnan S, Poitevin F, Yu O, Berkson-Korenberg Z, Petrescu M, Lilly MP, Szkopek T, Agarwal K, West KW, Pfeiffer LN, Gervais G
Dynamical Enhancement of Symmetries in Many-Body Systems.
Agarwal K, Martin I
Electron-phonon instability in graphene revealed by global and local noise probes.
Andersen TI, Dwyer BL, Sanchez-Yamagishi JD, Rodriguez-Nieva JF, Agarwal K, Watanabe K, Taniguchi T, Demler EA, Kim P, Park H, Lukin MD
Probing novel out-of-equilibrium dynamics and new phases in quantum systems
Principal investigators: Agarwal, Kartiek
Keywords: Driven phases of matter; Luttinger liquid phases; Many-body localization; Quantum Hall nematics; Quantum matter out-of-equilibrium; Quantum state preparation and quantum control; Spetroscopic probes such as Nitrogen-Vacancy Centers
Probing novel out-of-equilibrium dynamics and new phases in quantum systems
Principal investigators: Agarwal, Kartiek
From CIHR, NSERC and SSHRC funding decisions: CIHR since 2008, NSERC since 1991 and SSHRC since 1998, including their latest published competition results.
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