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A. Erzan

Publications and source records attributed to A. Erzan.

6 recordsLinked to original sources

The Shift-Match Number and String Matching Probabilities for Binary Sequences

We define the ``shift-match number'' for a binary string and we compute the probability of occurrence of a given string as a subsequence in longer strings in terms of its shift-match number. We thus prove that the string matching probabilities depend not only on the length of shorter strings, but also on the equivalence class of the shorter string determined by its shift-match number.

q-bio.GN

Percolation exponents at the entanglement transition

NOTE: This paper has been withdrawn by the authors, because they have been subsequently convinced that the sudden increase in the pyrene fluorescence cannot arise from entanglements but must rather come from a caging effect, at much smaller length scales, signalling the onset of vitrification. Thus the percolation exponents that are observed must arise from the percolation of these dense caging regions.

cond-mat.stat-mech

Equilibrium correlations in a model for multidimensional epistasis

We investigate a statistical model for multidimensional epistasis. The genotype is devided into subsequences, and within each subsequence mutations which occur in a prescribed order are beneficial. The bit-string model used to represent the genotype, may be cast in the form of a ferromagnetic Ising model with a staggered field. We obtain the actual correlations between mutations at different sites, within an equilibrium population at a given "tolerance," which we define to be the temperature of the statistical ensemble.

physics.bio-ph

Slow regions percolate near glass transition

A nano-second scale in situ probe reveals that a bulk linear polymer undergoes a sharp phase transition as a function of the degree of conversion, as it nears the glass transition. The scaling behaviour is in the same universality class as percolation. The exponents γand βare found to be 1.7 \pm .1 and 0.41\pm 0.01 in agreement with the best percolation results in three dimensions.

cond-mat.soft

Delocalization Transition of a Rough Adsorption-Reaction Interface

We introduce a new kinetic interface model suitable for simulating adsorption-reaction processes which take place preferentially at surface defects such as steps and vacancies. As the average interface velocity is taken to zero, the self- affine interface with Kardar-Parisi-Zhang like scaling behaviour undergoes a delocalization transition with critical exponents that fall into a novel universality class. As the critical point is approached, the interface becomes a multi-valued, multiply connected self-similar fractal set. The scaling behaviour and critical exponents of the relevant correlation functions are determined from Monte Carlo simulations and scaling arguments.

cond-mat.stat-mech

Novel Position-Space Renormalization Group for Bond Directed Percolation in Two Dimensions

A new position-space renormalization group approach is investigated for bond directed percolation in two dimensions. The threshold value for the bond occupation probabilities is found to be $p_c=0.6443$. Correlation length exponents on time (parallel) and space (transverse) directions are found to be $ν_\parallel=1.719$ and $ν_\perp=1.076$, respectively, which are in very good agreement with the best known series expansion results.

cond-mat.stat-mech