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- W2488079594 abstract "We develop and apply the Diagrammatic Monte Carlo technique to address the problem of stability of the Dirac liquid state (in a graphene type system) against strong long-range part of the Coulomb interaction. So far, all attempts to deal with this problem in the field-theoretical framework were limited either to perturbative or RPA treatments, with diametrically opposite conclusions. Our calculations aim at the approximations-free solution with controlled accuracy by computing vertex corrections from higher-order skeleton diagrams and establishing the renormalization group flow of the effective Coulomb coupling constant. We unambiguously show that with increasing the system size $L$ (up to $ln(L) sim 40$), the coupling constant always flows towards zero; i.e. the two dimensional Dirac liquid is an asymptotically free $T=0$ state with divergent Fermi velocity." @default.
- W2488079594 created "2016-08-23" @default.
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- W2488079594 date "2017-01-12" @default.
- W2488079594 modified "2023-10-12" @default.
- W2488079594 title "Stability of Dirac Liquids with Strong Coulomb Interaction" @default.
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- W2488079594 doi "https://doi.org/10.1103/physrevlett.118.026403" @default.
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