arXiv · 1912.10572
Entanglement compression in scale space: from the multiscale entanglement renormalization ansatz to matrix product operators
Abstract
The multiscale entanglement renormalization ansatz (MERA) provides a constructive algorithm for realizing wavefunctions that are inherently scale invariant. Unlike conformally invariant partition functions however, the finite bond dimension $χ$ of the MERA provides a cut-off in the fields that can be realized. In this letter, we demonstrate that this cut-off is equivalent to the one obtained when approximating a thermal state of a critical Hamiltonian with a matrix product operator (MPO) of finite bond dimension $χ$. This is achieved by constructing an explicit mapping between the isometries of a MERA and the local tensors of the MPO.
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Karel Van Acoleyen, Andrew Hallam, Matthias Bal, Markus Hauru, Jutho Haegeman, Frank Verstraete. 2019-12-23. Entanglement compression in scale space: from the multiscale entanglement renormalization ansatz to matrix product operators. https://doi.org/10.1103/physrevb.102.165131
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