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Gauge theories describe the fundamental forces in the standard model of particle physics and play an important role in condensed matter physics.
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2018
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C. Schweizer, F. Grusdt, M. Berngruber, L. Barbiero, E. Demler, N. Goldman, I. Bloch, and M. Aidelsburger, Floquet approach to z2 lattice gauge theories with ultracold atoms in optical lattices, Nature Physics 15
2019
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M. Heyl, P. Hauke, and P. Zoller, Quantum localization bounds trotter errors in digital quantum simulation, Science Advances 5
2019
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2019
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2019
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2020
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A. Mil, T. V. Zache, A. Hegde, A. Xia, R. P. Bhatt, M. K. Oberthaler, P. Hauke, J. Berges, and F. Jendrzejewski, A scalable realization of local u(1) gauge invariance in cold atomic mixtures, Science 367
2020
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B. Yang, H. Sun, R. Ott, H.-Y. Wang, T. V. Zache, J. C. Halimeh, Z.-S. Yuan, P. Hauke, and J.-W. Pan, Observation of gauge invariance in a 71-site bose–hubbard quantum simulator, Nature 587
2020
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2021
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2021
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C. Kargi, J. P. Dehollain, F. Henriques, L. M. Sieberer, T. Olsacher, P. Hauke, M. Heyl, P. Zoller, and N. K. Langford, Quantum chaos and universal trotterisation performance behaviours in digital quantum simulation, in Quantum Information and Measurement VI 2021 (Optica Publishing Group, 2021) p. W3A.1
2021
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A. S. Aramthottil, U. Bhattacharya, D. González-Cuadra, M. Lewenstein, L. Barbiero, and J. Zakrzewski, Scar states in deconfined ℤ 2 \mathbb{Z}_{2} lattice gauge theories, Phys. Rev. B 106
2022
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N. H. Nguyen, M. C. Tran, Y. Zhu, A. M. Green, C. H. Alderete, Z. Davoudi, and N. M. Linke, Digital quantum simulation of the schwinger model and symmetry protection with trapped ions, PRX Quantum 3
2022
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Z. Wang, Z.-Y. Ge, Z. Xiang, X. Song, R.-Z. Huang, P. Song, X.-Y. Guo, L. Su, K. Xu, D. Zheng, and H. Fan, Observation of emergent ℤ 2 \mathbb{Z}_{2} gauge invariance in a superconducting circuit, Phys. Rev. Res. 4
2022
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K. Chinni, M. H. Muñoz Arias, I. H. Deutsch, and P. M. Poggi, Trotter errors from dynamical structural instabilities of floquet maps in quantum simulation, PRX Quantum 3
2022
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L. Lao, A. Korotkov, Z. Jiang, W. Mruczkiewicz, T. E. O’Brien, and D. E. Browne, Software mitigation of coherent two-qubit gate errors, Quantum Science and Technology 7
2022
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Z.-Y. Zhou, G.-X. Su, J. C. Halimeh, R. Ott, H. Sun, P. Hauke, B. Yang, Z.-S. Yuan, J. Berges, and J.-W. Pan, Thermalization dynamics of a gauge theory on a quantum simulator, Science 377
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A. Smith, B. Jobst, A. G. Green, and F. Pollmann, Crossing a topological phase transition with a quantum computer, Phys. Rev. Res. 4
2022
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T. V. Zache, M. Van Damme, J. C. Halimeh, P. Hauke, and D. Banerjee, Toward the continuum limit of a ( 1 + 1 ) D (1+1)\mathrm{D} quantum link schwinger model, Phys. Rev. D 106
2022
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M. Honda, E. Itou, Y. Kikuchi, and Y. Tanizaki, Negative string tension of a higher-charge Schwinger model via digital quantum simulation, Progress of Theoretical and Experimental Physics 2022
2022
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V. Kasper, T. V. Zache, F. Jendrzejewski, M. Lewenstein, and E. Zohar, Non-abelian gauge invariance from dynamical decoupling, Phys. Rev. D 107
2023
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Y. Y. Atas, J. F. Haase, J. Zhang, V. Wei, S. M.-L. Pfaendler, R. Lewis, and C. A. Muschik, Simulating one-dimensional quantum chromodynamics on a quantum computer: Real-time evolutions of tetra- and pentaquarks, Phys. Rev. Res. 5
2023
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M. Kebrič, U. Borla, U. Schollwöck, S. Moroz, L. Barbiero, and F. Grusdt, Confinement induced frustration in a one-dimensional lattice gauge theory, New Journal of Physics 25
2023
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Cirq Developers, Cirq (2023)
2023
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A. T. K. Tan, S.-N. Sun, R. N. Tazhigulov, G. K.-L. Chan, and A. J. Minnich, Realizing symmetry-protected topological phases in a spin-1/2 chain with next-nearest-neighbor hopping on superconducting qubits, Phys. Rev. A 107
2023
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M. Van Damme, H. Lang, P. Hauke, and J. C. Halimeh, Reliability of lattice gauge theories in the thermodynamic limit, Phys. Rev. B 107
2023
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