33 citations · 124 across the 7 of their papers we have counts for
9 papers
Crowding-Enhanced Diffusion: An Exact Theory for Highly Entangled Self-Propelled Stiff Filaments
Suvendu Mandal, Christina Kurzthaler, Thomas Franosch +1
We study a strongly interacting crowded system of self-propelled stiff filaments by event-driven Brownian dynamics simulations and an analytical theory to elucidate the intricate i…
Active Refrigerators Powered by Inertia
Lukas Hecht, Suvendu Mandal, Hartmut Löwen +1
We present the operational principle for a refrigerator which uses inertial effects in active Brownian particles to locally reduce their (kinetic) temperature by two orders of magn…
Nonergodicity parameters of confined hard-sphere glasses
Suvendu Mandal, Simon Lang, Vitalie Boţan +1
Within a recently developed mode-coupling theory for fluids confined to a slit we elaborate numerical results for the long-time limits of suitably generalized intermediate scatteri…
Time-dependent active microrheology in dilute colloidal suspensions
Sebastian Leitmann, Suvendu Mandal, Matthias Fuchs +2
In a microrheological set-up a single probe particle immersed in a complex fluid is exposed to a strong external force driving the system out of equilibrium. Here, we elaborate ana…
Mode-Coupling Theory for Tagged-Particle Motion of Active Brownian Particles
Julian Reichert, Suvendu Mandal, Thomas Voigtmann
We derive a mode-coupling theory (MCT) to describe the dynamics of tracer particles in dense systems of active Brownian particles (ABPs) in two spatial dimensions. The ABP undergo…
Persistent anti-correlations in Brownian dynamics simulations of dense colloidal suspensions revealed by noise suppression
Suvendu Mandal, Lukas Schrack, Hartmut Löwen +2
Transport properties of a hard-sphere colloidal fluid are investigated by Brownian dynamics simulations. We implement a novel algorithm for the time-dependent velocity-autocorrelat…