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Tensor networks for High Energy Physics: contribution to Snowmass 2021

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arxiv 2203.04902 v1 pith:JCZUOJNO submitted 2022-03-09 hep-lat hep-th

classification hep-lathep-th
keywords methodsphysicssciencediscussquantumtensorcalculationsdevelopment
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Tensor network methods are becoming increasingly important for high-energy physics, condensed matter physics and quantum information science (QIS). We discuss the impact of tensor network methods on lattice field theory, quantum gravity and QIS in the context of High Energy Physics (HEP). These tools will target calculations for strongly interacting systems that are made difficult by sign problems when conventional Monte Carlo and other importance sampling methods are used. Further development of methods and software will be needed to make a significant impact in HEP. We discuss the roadmap to perform quantum chromodynamics (QCD) related calculations in the coming years. The research is labor intensive and requires state of the art computational science and computer science input for its development and validation. We briefly discuss the overlap with other science domains and industry.

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Cited by 2 Pith papers

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    Using approximate renormalization group methods, the authors map phase diagrams of Z3 spin and gauge models and find that only chiral spin models and their duals show an infinite Devil's flower family of inhomogeneous...

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    hep-lat 2025-01 conditional novelty 5.0 of 10

    A dressed-site rishon formalism enables bosonic, gauge-invariant tensor network simulations of SU(2) lattice gauge theory in two dimensions, yielding finite-density phase diagrams and quantum many-body scarring dynamics.

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