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Sublattice Coding Algorithm and Distributed Memory Parallelization for Large-Scale Exact Diagonalizations of Quantum Many-Body Systems

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arxiv 1804.05028 v2 pith:I6W7AALZ submitted 2018-04-13 cond-mat.str-el

classification cond-mat.str-el
keywords systemsdistributedexactmany-bodymemoryparallelizationquantumalgorithm
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We present algorithmic improvements for fast and memory-efficient use of discrete spatial symmetries in Exact Diagonalization computations of quantum many-body systems. These techniques allow us to work flexibly in the reduced basis of symmetry-adapted wave functions. Moreover, a parallelization scheme for the Hamiltonian-vector multiplication in the Lanczos procedure for distributed memory machines avoiding load balancing problems is proposed. We demonstrate that using these methods low-energy properties of systems of up to 50 spin-1/2 particles can be successfully determined.

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  1. Hyperdeterminant wavefunctions

    cond-mat.str-el 2026-07 conditional novelty 7.5 of 10

    Hyperdeterminant wavefunctions with a locality structure, plus VMPI effective theories and projective expansion, give a practical variational framework for fractional Chern insulators and quantum spin liquids.

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