David A. Huse
Active 1984–2025
- Also published as
- David A Huse
- 74
- Papers
- 31,179
- Citations
- 62
- h-index
- 74
- i10-index
Citations
Citation sources
Countries
Institutions
Fields
- Physics and Astronomy68%
- Computer Science17.2%
- Biochemistry, Genetics and Molecular Biology5.1%
- Materials Science4.8%
- Mathematics1.9%
- Medicine0.8%
- Other2.2%
Topics
- Quantum many-body systems17.2%
- Quantum Information and Cryptography10.4%
- Quantum Computing Algorithms and Architecture9.9%
- Quantum and electron transport phenomena5.6%
- Theoretical and Computational Physics5%
- Physics of Superconductivity and Magnetism4.9%
- Other47%
Coauthors
- Michael J. Gullans10
- Vedika Khemani9
- Daniel S. Fisher8
- Sarang Gopalakrishnan8
- Rahul Nandkishore4
- S. L. Sondhi4
- Vadim Oganesyan4
- C. Monroe3
- Rajiv R. P. Singh3
- Romain Vasseur3
- Aidan Zabalo2
- Alan Morningstar2
- Alexey V. Gorshkov2
- Andrew Risinger2
- Arijeet Pal2
- Christopher L. Henley2
- Crystal Noel2
- D. J. Bishop2
- D. M. Ginsberg2
- D. N. Sheng2
- Daiwei Zhu2
- Debopriyo Biswas2
- Ehud Altman2
- Grace M. Sommers2
All papers
- Many-Body Localization and Thermalization in Quantum Statistical Mechanics
Authors: Rahul Nandkishore, David A. Huse - Annual Review of Condensed Matter Physics 2015 cited by 2,407
- Dynamical Purification Phase Transition Induced by Quantum Measurements
Authors: Michael J. Gullans, David A. Huse - Physical Review X 2020 cited by 375
- Critical properties of the measurement-induced transition in random quantum circuits
Authors: Aidan Zabalo, Michael J. Gullans, Justin H. Wilson, Sarang Gopalakrishnan, David A. Huse, J. H. Pixley - Physical review. B./Physical review. B 2020 cited by 383
- Measurement-induced quantum phases realized in a trapped-ion quantum computer
Authors: Crystal Noel, Pradeep Niroula, Daiwei Zhu, Andrew Risinger, Laird Egan, Debopriyo Biswas, Marko Cetina, Alexey V. Gorshkov, Michael J. Gullans, David A. Huse, C. Monroe - Nature Physics 2022 cited by 262
- Scalable Probes of Measurement-Induced Criticality
Authors: Michael J. Gullans, David A. Huse - Physical Review Letters 2020 cited by 316
- Operator Spreading and the Emergence of Dissipative Hydrodynamics under Unitary Evolution with Conservation Laws
Authors: Vedika Khemani, Ashvin Vishwanath, David A. Huse - Physical Review X 2018 cited by 531
- Entanglement Phase Transitions in Measurement-Only Dynamics
Authors: Matteo Ippoliti, Michael J. Gullans, Sarang Gopalakrishnan, David A. Huse, Vedika Khemani - Physical Review X 2021 cited by 239
- Ballistic Spreading of Entanglement in a Diffusive Nonintegrable System
Authors: HyungWon Kim, David A. Huse - Physical Review Letters 2013 cited by 579
- Field theory of charge sharpening in symmetric monitored quantum circuits
Authors: Fergus Barratt, Utkarsh Agrawal, Sarang Gopalakrishnan, David A. Huse, Romain Vasseur, Andrew C. Potter - arXiv (Cornell University) 2021 cited by 91
- Localization of interacting fermions at high temperature
Authors: Vadim Oganesyan, David A. Huse - Physical Review B 2007 cited by 1,864
- Many-body localization phase transition
Authors: Arijeet Pal, David A. Huse - Physical Review B 2010 cited by 1,523
- Many-body localization in a quantum simulator with programmable random disorder
Authors: J. L. Smith, A. Lee, Philip Richerme, Brian Neyenhuis, Paul Hess, Philipp Hauke, Markus Heyl, David A. Huse, C. Monroe - Nature Physics 2016 cited by 938
- Exploring the many-body localization transition in two dimensions
Authors: Jae-yoon Choi, Sebastian Hild, Johannes Zeiher, Peter Schauß, Antonio Rubio-Abadal, Tarik Yefsah, Vedika Khemani, David A. Huse, Immanuel Bloch, Christian Groß - Science 2016 cited by 1,004
- Phenomenology of fully many-body-localized systems
Authors: David A. Huse, Rahul Nandkishore, Vadim Oganesyan - Physical Review B 2014 cited by 957
- Avalanches and many-body resonances in many-body localized systems
Authors: Alan Morningstar, Luis Colmenárez, Vedika Khemani, David J. Luitz, David A. Huse - Physical review. B./Physical review. B 2022 cited by 272
- Testing whether all eigenstates obey the eigenstate thermalization hypothesis
Authors: HyungWon Kim, Tatsuhiko N. Ikeda, David A. Huse - Physical Review E 2014 cited by 423
- Feedback-optimized parallel tempering Monte Carlo
Authors: Helmut G Katzgraber, Simon Trebst, David A Huse, Matthias Troyer - Journal of Statistical Mechanics Theory and Experiment 2006 cited by 252
- Localization-protected quantum order
Authors: David A. Huse, Rahul Nandkishore, Vadim Oganesyan, Arijeet Pal, S. L. Sondhi - Physical Review B 2013 cited by 482
- Many-body localization in a quasiperiodic system
Authors: Shankar Iyer, Vadim Oganesyan, Gil Refael, David A. Huse - Physical Review B 2013 cited by 429
- Speed, dissipation, and error in kinetic proofreading
Authors: Arvind Murugan, David A. Huse, Stanislas Leibler - National Academy of Sciences, Proceedings of the National Academy of Sciences 2012 cited by 212
- Non-Abelian symmetry can increase entanglement entropy
Authors: Shayan Majidy, Aleksander Lasek, David A. Huse, Nicole Yunger Halpern - Physical review. B./Physical review. B 2023 cited by 47
- Crystalline Quantum Circuits
Authors: Grace M. Sommers, David A. Huse, Michael J. Gullans - PRX Quantum 2023 cited by 25
- Hydrodynamics of operator spreading and quasiparticle diffusion in interacting integrable systems
Authors: Sarang Gopalakrishnan, David A. Huse, Vedika Khemani, Romain Vasseur - Physical review. B./Physical review. B 2018 cited by 306
- Observation of antiferromagnetic correlations in the Hubbard model with ultracold atoms
Authors: Russell Hart, Pedro Duarte, Tsung‐Lin Yang, Xinxing Liu, Thereza Paiva, Ehsan Khatami, Richard T. Scalettar, Nandini Trivedi, David A. Huse, Randall G. Hulet - Nature 2015 cited by 435
