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Physical Review. E|June 16, 2022
Machine-learning potential of a single pendulumSwarnendu Mandal, Sudeshna Sinha, Manish Dev ShrimaliPhysical Review. E, Statistical, Nonlinear, and Soft Matter Physics|March 23, 2002
Parallel computing with extended dynamical systemsSudeshna Sinha, Toshinori Munakata, William L DittoPhysical Review. E, Statistical, Nonlinear, and Soft Matter Physics|June 6, 2003
Evidence for directed percolation universality at the onset of spatiotemporal intermittency in coupled circle mapsT M Janaki, Sudeshna Sinha, Neelima GuptePhysical Review. E, Statistical, Nonlinear, and Soft Matter Physics|October 15, 2008
Enhancement of spatiotemporal regularity in an optimal window of random couplingSwarup Poria, Manish Dev Shrimali, Sudeshna SinhaPhysical Review. E|September 27, 2018
Identifying nodal properties that are crucial for the dynamical robustness of multistable networksPranay Deep Rungta, Chandrakala Meena, Sudeshna SinhaPhysical Review. E, Statistical, Nonlinear, and Soft Matter Physics|March 23, 2002
Flexible parallel implementation of logic gates using chaotic elementsSudeshna Sinha, Toshinori Munakata, William L DittoPlos One|August 26, 2017
Threshold-activated transport stabilizes chaotic populations to steady statesChandrakala Meena, Pranay Deep Rungta, Sudeshna SinhaChaos (Woodbury, N.Y.)|January 5, 2011
A coupled map lattice model for rheological chaos in sheared nematic liquid crystalsS M Kamil, Gautam I Menon, Sudeshna SinhaPhysical Review. E, Statistical, Nonlinear, and Soft Matter Physics|September 4, 2008
Regular and chaotic states in a local map description of sheared nematic liquid crystalsS M Kamil, Sudeshna Sinha, Gautam I MenonChaos (Woodbury, N.Y.)|October 5, 2010
Introduction to focus issue: intrinsic and designed computation: information processing in dynamical systems--beyond the digital hegemonyJames P Crutchfield, William L Ditto, Sudeshna SinhaPageof 19