Please use this identifier to cite or link to this item: http://dspace.iitrpr.ac.in:8080/xmlui/handle/123456789/1290
Title: Steady-state dynamics of an inhomogeneous two-channel TASEP with Langmuir kinetics
Authors: Dhiman, I.
Gupta, A.K.
Keywords: Two-channel
Bottleneck
Phase transitions
Monte-Carlo simulations
Issue Date: 14-Jun-2019
Abstract: The steady-state dynamics of a two-channel TASEP coupled with Langmuir kinetics in the presence of a localized bottleneck are investigated under a fully asymmetric lane-changing rule. A hybrid mean-¯eld approach is adopted to generate the density pro¯les as well as phase diagrams. The e®ect of lane-changing rate and strength of bottleneck on the stationary dynamics of the system has also been investigated. It is observed that an increase in lane-changing rate weakens the e®ect of bottleneck. As a part of studying the shock dynamics, we have identi¯ed and analyzed turning e®ect in the movement of shock with respect to lane-changing rate. Our theoretical arguments are in good agreement with extensively performed Monte-Carlo simulations.
URI: http://localhost:8080/xmlui/handle/123456789/1290
Appears in Collections:Year-2018

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