Statistics of event by event fluctuations

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Date
2010-09-15
Authors
Manimaran, P.
Panigrahi, Prasanta K.
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Abstract
Following Hwa and Wu [R.C. Hwa, Y. Wu, Phys. Rev. C 60 (1999) 0544904], we characterize the fluctuation behavior of the hadron density produced during quark-hadron phase transition, as modeled by a 2D Ising model. Using a recently developed discrete wavelet based approach, the scaling behavior is studied at temperatures below, at and above Tc. At Tc, we find the Hurst exponent H≃1, as observed in a recent experimental finding [L. Qin, M. Ta-chung, Phys. Rev. D 72 (2005) 014011]. However, as compared to the RS analysis, which yields only the Hurst exponent, our local approach finds a correlation behavior and multifractal properties at temperatures below, at and above Tc. We find evidence for a transition from Brownian to fractional Browian motion near Tc. The correlation behavior compares well with the results obtained from a continuous wavelet based average wavelet co-efficient method, as well as with Fourier power spectral analysis. © 2010 Elsevier B.V.
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Keywords
Fractals, Hurst exponent, Non-stationary time series, Phase transition, Wavelets
Citation
Physica A: Statistical Mechanics and its Applications. v.389(18)