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20032005
most citedDistributed-Order Fractional Kinetics

145 citations · 243 across the 7 of their papers we have counts for

collaborators

7 papers

q-bio.SC2005

Single Stranded DNA Translocation Through a Fluctuating Nanopore

O. Flomenbom, J. Klafter

We investigate the translocation of a single stranded DNA (ssDNA) through a pore, which fluctuates between two conformations, by using coupled master equations (ME). The probabilit…

cond-mat.other200430 cited

Insight into Resonant Activation in Discrete Systems

O. Flomenbom, J. Klafter

The resonant activation phenomenon (RAP) in a discrete system is studied using the master equation formalism. We show that the RAP corresponds to a non-monotonic behavior of the fr…

cond-mat.stat-mech2004145 cited

Distributed-Order Fractional Kinetics

I. M. Sokolov, A. V. Chechkin, J. Klafter

Fractional diffusion equations are widely used to describe anomalous diffusion processes where the characteristic displacement scales as a power of time. For processes lacking such…

cond-mat.stat-mech2003

Molecular motor with a build-in escapement device

G. Oshanin, J. Klafter, M. Urbakh

We study dynamics of a classical particle in a one-dimensional potential, which is composed of two periodic components, that are time-independent, have equal amplitudes and periodi…

cond-mat.stat-mech200323 cited

Translocation of a Single Stranded DNA Through a Conformationally Changing Nanopore

O. Flomenbom, J. Klafter

We investigate the translocation of a single stranded DNA through a pore which fluctuates between two conformations, using coupled master equations. The probability density functio…

cond-mat.stat-mech200345 cited

Single Stranded DNA Translocation Through A Nanopore: A Master Equation Approach

O. Flomenbom, J. Klafter

We study voltage driven translocation of a single stranded (ss) DNA through a membrane channel. Our model, based on a master equation (ME) approach, investigates the probability de…