Monte-Carlo simulations of su(2) symmetric deconfined criticality action
ORAL
Abstract
We discuss results of Monte Carlo simulations of su(2) symmetric deconfined criticality action in $CP^1$ formulation proposed by T. Senthil,et. al, Science {\bf 303}, 1490 (2004). Using high-temperature expansion we reformulate the partition function in terms of J-currents. The resulting configuration space is explicitly su(2) symmetric. Critical behavior in the region of possible deconfined critical point (DCP) is addressed by the flow method [A.B.Kuklov, et.al., Annals of Physics {\bf 321},1602(2006)] mapping critical properties of a system with small values of the gauge interaction $g$ at large sizes to a system with large $g$ and small sizes. We observe data collapse on a single master curve with the flow toward fluctuation induced I order transition. The unlikely possibility of existence of the lower tricritical point separating I order transitions from the DCP line is assessed in terms of disruption of the flow collapse.
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Authors
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A.B. Kuklov
CSI, CUNY
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M. Matsumoto
Universite Paul Sabatier, Toulouse ; ETH Zurich
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Nikolay Prokof'ev
University of Massachusetts, Amherst, UMASS Amherst, UMASS, Amherst; ETH Zurich; Kurchatov Institute, Moscow, Physics Department, University of Massachusetts, Amherst, University of Massachusetts at Amherst, University of Massachusetts, Amherst, MA 01003, USA
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Boris Svistunov
University of Massachusetts, Amherst, UMASS Amherst, Department of Physics, University of Massachusetts Amherst, UMASS, Amherst; Kurchatov Institute, Moscow, Physics Department, University of Massachusetts, Amherst, University of Massachusetts at Amherst
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M. Troyer
ETH Zurich