Non-Equilibrium Open Systems
FOCUS · Y31 · ID: 2154362
Presentations
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Partially observed Schrödinger flows: an application to stochastic thermodynamics
ORAL · Invited
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Presenters
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Olga Movilla Miangolarra
University of California, Irvine
Authors
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Olga Movilla Miangolarra
University of California, Irvine
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Asmaa Eldesoukey
University of California, Irvine
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Tryphon T Georgiou
University of California, Irvine
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Three limiting cases - one theory: Decoding quantum dynamics from continuous measurements via higher order spectra in cases of telegraph noise, Gaussian noise, and stochastic clicks
ORAL
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Publication: [1] M. Sifft, et al. Phys. Rev. Res. 3, 033123 (2021).
[2] Daniel Hägele, et al., Phys. Rev. B 98, 205143 (2018).
[3] Markus Sifft and Daniel Hägele, Phys. Rev. A 107, 052203 (2023)
[4] M. Sifft et al., arXiv:2310.10464Presenters
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Daniel Hägele
Ruhr University Bochum, Ruhr-University Bochum
Authors
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Daniel Hägele
Ruhr University Bochum, Ruhr-University Bochum
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Markus Sifft
Ruhr University Bochum
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Approaching the classical limit of Lindblad dynamics --- emergence of limit cycles, fixed points and algebraic decay
ORAL
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Presenters
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Masudul Haque
Technical University Dresden
Authors
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Masudul Haque
Technical University Dresden
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Shu Zhang
Max Planck Institute for Physics of Complex Systems
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Shovan Dutta
Raman Research Institute
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Spectral properties of generic local Lindbladians: Implications for open system dynamics
ORAL
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Presenters
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Sanket Chirame
University of Minnesota
Authors
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Sanket Chirame
University of Minnesota
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Fiona Burnell
University of Minnesota
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Oral: Creating Artificial Quantum Reservoirs through Driven-Dissipative Processes in Superconducting Circuits
ORAL
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Presenters
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Qihao Guo
Purdue University
Authors
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Qihao Guo
Purdue University
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Botao Du
Purdue University
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Ramya Suresh
Purdue University
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Ruichao Ma
Purdue University
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Signature of Liouvillian exceptional point in stationary current noise
ORAL
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Presenters
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Kazunari Hashimoto
University of Yamanashi
Authors
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Kazunari Hashimoto
University of Yamanashi
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Probabilistic Unitary Formulation of Open Quantum System Dynamics
ORAL
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Publication: https://arxiv.org/pdf/2307.05776.pdf
Presenters
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Le Hu
University of Rochester
Authors
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Le Hu
University of Rochester
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Andrew N Jordan
University of Rochester, Chapman University
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Exact speed limit for measurement of quantum systems
ORAL
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Presenters
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Frederik S Nathan
University of Copenhagen
Authors
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Frederik S Nathan
University of Copenhagen
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Real-time Quantum Monte Carlo Algorithm for Open Quantum Systems
ORAL
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Publication: Real-time Quantum Monte Carlo Algorithm for Open Quantum Systems, Tong Shen and Daniel Lidar, in preparation
Presenters
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Tong Shen
University of Southern California
Authors
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Tong Shen
University of Southern California
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Daniel A Lidar
University of Southern California
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Unveiling average symmetry-protected topological phases through tensor network states
ORAL
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Presenters
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Jianhao Zhang
The Pennsylvania State University
Authors
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Jianhao Zhang
The Pennsylvania State University
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Zhen Bi
Pennsylvania State University
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Tunable discrete time crystals
ORAL
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Publication: References:
[1.] Yao, N.Y., Nayak, C., Balents, L. et al. "Classical discrete time crystal", Nat. Phys. 16, 438–447 (2020).
[2.] Sarkar A. et al. "Observation of tunable discrete time crystalline phases", arXiv:2302.13318v1Presenters
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Ateesh K Rathi
Indian Institute of Technology, Indian Institute of Technology, kanpur
Authors
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Ateesh K Rathi
Indian Institute of Technology, Indian Institute of Technology, kanpur
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Arnab Sarkar
Indian Institute of technology Kanpur
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Javed A Mondal
Indian Institute of Technology, Kanpur
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Jyoti Pareek
Indian Institute of Technology Kanpur, Indian Institute of Technology, Kanpur
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Rajan Singh
Weizmann Institute of Science, Weizmann Institute of Science, Rehovot, Israel
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Anurag .
Indian Institute of Technology Kanpur
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Aamir A Makki
Pennsylvania State University
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Sagar Chakraborty
Indian Institute of Technology Kanpur
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Ryan J.T. T Nicholl
Vanderbilt University, tennessee 37235, USA, Vanderbilt University Tennessee, USA
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Kirill I Bolotin
Freie Universitat Berlin, Arnimallee 14, Berlin 14195
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Saikat Ghosh
Indian Institute of Technology Kanpur, Indian Institute of Technology, Kanpur
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Maximum Caliber Principle derives Maxwell-Onsager reciprocal relations for Fundamental Observables and Forces in Nonequilibria
ORAL
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Publication: Manuscript of this work is under preparation
Presenters
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Ying-Jen Yang
Stony Brook University (SUNY)
Authors
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Ying-Jen Yang
Stony Brook University (SUNY)
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Ken A Dill
Stony Brook University (SUNY)
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