Quantum Circuit Approximations and Entanglement Renormalization for the Dirac Field in 1+1 Dimensions

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作者
Freek Witteveen
Volkher Scholz
Brian Swingle
Michael Walter
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[1] University of Amsterdam,Korteweg
[2] Ghent University,de Vries Institute for Mathematics and QuSoft
[3] University of Maryland,Department of Physics
[4] University of Amsterdam,Condensed Matter Theory Center, Maryland Center for Fundamental Physics, Joint Center for Quantum Information and Computer Science, and Department of Physics
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The multiscale entanglement renormalization ansatz describes quantum many-body states by a hierarchical entanglement structure organized by length scale. Numerically, it has been demonstrated to capture critical lattice models and the data of the corresponding conformal field theories with high accuracy. However, a rigorous understanding of its success and precise relation to the continuum is still lacking. To address this challenge, we provide an explicit construction of entanglement-renormalization quantum circuits that rigorously approximate correlation functions of the massless Dirac conformal field theory. We directly target the continuum theory: discreteness is introduced by our choice of how to probe the system, not by any underlying short-distance lattice regulator. To achieve this, we use multiresolution analysis from wavelet theory to obtain an approximation scheme and to implement entanglement renormalization in a natural way. This could be a starting point for constructing quantum circuit approximations for more general conformal field theories.
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页码:75 / 120
页数:45
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