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Classification of potential flows under renormalization group transformation
Journal article   Open access   Peer reviewed

Classification of potential flows under renormalization group transformation

Sze-Bi Hsu, Bernold Fiedler and Hsiu-Hau Lin
Discrete and Continuous Dynamical Systems - Series B, Vol.21(2), pp.437-446
01/03/2016

Abstract

Blow-up in finite time Gradient flow LaSalles' invariance principle Polar equations RG flow Strongly correlated electron system
Competitions between different interactions in strongly correlated electron systems often lead to exotic phases. Renormalization group is one of the powerful techniques to analyze the competing interactions without presumed bias. It was recently shown that the renormalization group transformations to the one-loop order in many correlated electron systems are described by potential flows. Here we prove several rigorous theorems in the presence of renormalization-group potential and find the complete classification for the potential flows. In addition, we show that the relevant interactions blow up at the maximal scaling exponent of unity, explaining the puzzling power-law Ansatz found in previous studies. The above findings are of great importance in building up the hierarchy for relevant couplings and the complete classification for correlated ground states in the presence of generic interactions.
url
https://doi.org/10.3934/dcdsb.2016.21.437View
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