Master Operators Govern Multifractality in Percolation
arXiv:cond-mat/0002384 · doi:10.1209/epl/i2000-00372-y
Abstract
Using renormalization group methods we study multifractality in percolation at the instance of noisy random resistor networks. We introduce the concept of master operators. The multifractal moments of the current distribution (which are proportional to the noise cumulants of the resistance between two sites x and located on the same cluster) are related to such master operators. The scaling behavior of the multifractal moments is governed exclusively by the master operators, even though a myriad of servant operators is involved in the renormalization procedure. We calculate the family of multifractal exponents for the scaling behavior of the noise cumulants, , where is the correlation length exponent for percolation, to two-loop order.
6 pages
References in corpus (1)
Cited by in corpus (19)
- Conductivity of continuum percolating systems
- Scaling behavior of linear polymers in disordered media
- Where two fractals meet: the scaling of a self-avoiding walk on a percolation cluster
- Noisy random resistor networks: renormalized field theory for the multifractal moments of the current distribution
- On generalized scaling laws with continuously varying exponents
- Transport on Directed Percolation Clusters
- Logarithmic corrections to scaling in critical percolation and random resistor networks
- Nonlinear random resistor diode networks and fractal dimensions of directed percolation clusters
- Multifractal current distribution in random diode networks
- Multifractality in directed percolation
- Linear Polymers in Disordered Media - the shortest, the longest and the mean(est) SAW on percolation clusters
- Multifractal properties of resistor diode percolation
- Effects of surfaces on resistor percolation
- Renormalized field theory of resistor diode percolation
- Percolating granular superconductors
- Corrections to Scaling in Random Resistor Networks and Diluted Continuous Spin Models near the Percolation Threshold
- Attacks and Infections in Percolation Processes
- Transport properties of directed percolation clusters at the upper critical dimension
- Multifractality in a broad class of disordered systems