Fixed Points Structure & Effective Fractional Dimension for O(N) Models with Long-Range Interactions
Articolo
Data di Pubblicazione:
2015
Abstract:
We study, by renormalization group methods, O(N ) models with interactions decaying as power law with
exponent d + ? . When only the long-range momentum term p ? is considered in the propagator, the critical
exponents can be computed from those of the corresponding short-range O(N ) models at an effective fractional
dimension D eff . Neglecting wave function renormalization effects the result for the effective dimension is
, which turns to be exact in the spherical model limit (N -> ?). Introducing a running wave function
D eff = 2d
?
renormalization term the effective dimension becomes instead D eff = (2-? ? SR )d . The latter result coincides with
the one found using standard scaling arguments. Explicit results in two and three dimensions are given for the
exponent ?. We propose an improved method to describe the full theory space of the models where both short- and
long-range propagator terms are present and no a priori choice among the two in the renormalization group flow
is done. The eigenvalue spectrum of the full theory for all possible fixed points is drawn and a full description of
the fixed-point structure is given, including multicritical long-range universality classes. The effective dimension
is shown to be only approximate, and the resulting error is estimated.
Tipologia CRIS:
01.01 Articolo in rivista
Keywords:
long-range
Elenco autori:
Trombettoni, Andrea
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