Anomalous force-velocity relation of driven inertial tracers in steady laminar flows

. We study the nonlinear response to an external force of an inertial tracer advected by a two-dimensional incompressible laminar flow and subject to thermal noise. In addition to the driving external field F , the main parameters in the system are the noise amplitude D 0 and the characteristic Stok...

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Veröffentlicht in:The European physical journal. E, Soft matter and biological physics Soft matter and biological physics, 2017-09, Vol.40 (9), p.81-5, Article 81
Hauptverfasser: Cecconi, F., Puglisi, A., Sarracino, A., Vulpiani, A.
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Sprache:eng
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Zusammenfassung:. We study the nonlinear response to an external force of an inertial tracer advected by a two-dimensional incompressible laminar flow and subject to thermal noise. In addition to the driving external field F , the main parameters in the system are the noise amplitude D 0 and the characteristic Stokes time τ of the tracer. The relation velocity vs. force shows interesting effects, such as negative differential mobility (NDM), namely a non-monotonic behavior of the tracer velocity as a function of the applied force, and absolute negative mobility (ANM), i.e. a net motion against the bias. By extensive numerical simulations, we investigate the phase chart in the parameter space of the model, ( τ , D 0 ) , identifying the regions where NDM, ANM and more common monotonic behaviors of the force-velocity curve are observed. Graphical abstract
ISSN:1292-8941
1292-895X
DOI:10.1140/epje/i2017-11571-y