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We study lattice gauge theory with discrete, non-Abelian gauge groups.
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J. R. McClean, J. A. Parkhill, and A. Aspuru-Guzik, “Feynman’s clock, a new variational principle, and parallel-in-time quantum dynamics,” Proceedings of the National Academy of Sciences
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N. Klco, J. R. Stryker, and M. J. Savage, “Su(2) non-abelian gauge field theory in one dimension on digital quantum computers,” Phys. Rev. D 101, 074512 (2020)
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S. A. Rahman, R. Lewis, E. Mendicelli, and S. Powell, “Su(2) lattice gauge theory on a quantum annealer,” Phys. Rev. D 104, 034501 (2021)
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H. Lamm, S. Lawrence, and Y. Yamauchi, “General methods for digital quantum simulation of gauge theories,” Phys. Rev. D 100, 034518 (2019)
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A. Ciavarella, N. Klco, and M. J. Savage, “A trailhead for quantum simulation of su(3) yang-mills lattice gauge theory in the local multiplet basis,” Phys. Rev. D 103, 094501 (2021)
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S. Abel, N. Chancellor, and M. Spannowsky, “Quantum computing for quantum tunneling,” Phys. Rev. D
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C. W. Bauer, Z. Davoudi, A. B. Balantekin, T. Bhattacharya, M. Carena, W. A. de Jong, P. Draper, A. El-Khadra, N. Gemelke, M. Hanada, D. Kharzeev, H. Lamm, Y.-Y. Li, J. Liu, M. Lukin, Y. Meurice, C. Monroe, B. Nachman, G. Pagano, J. Preskill, E. Rinaldi, A. Roggero, D. I. Santiago, M. J. Savage, I. Siddiqi, G. Siopsis, D. V. Zanten, N. Wiebe, Y. Yamauchi, K. Yeter-Aydeniz, and S. Zorzetti, “Quantum simulation for high energy physics,” Apr. 2022
2022
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M. Illa and M. J. Savage, “Basic elements for simulations of standard model physics with quantum annealers: Multigrid and clock states,” Feb. 2022
2022
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M. Illa and M. J. Savage, “Basic elements for simulations of standard model physics with quantum annealers: Multigrid and clock states,” 2022
2022
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