activity
20172023
most citedOn the Einstein relation between mobility and diffusion coefficient in an active bath

37 citations · 65 across the 3 of their papers we have counts for

collaborators
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7 papers · 1 filter

cond-mat.stat-mech202237 cited

On the Einstein relation between mobility and diffusion coefficient in an active bath

Alexandre Solon, Jordan M. Horowitz

An active bath, made of self-propelling units, is a nonequilibrium medium in which the Einstein relation between the mobility and the diffusivity of a tracer par…

cond-mat.stat-mech2020

Self-Organized Critical Coexistence Phase in Repulsive Active Particles

Xia-qing Shi, Giordano Fausti, Hugues Chaté +2

We revisit motility-induced phase separation in two models of active particles interacting by pairwise repulsion. We show that the resulting dense phase contains gas bubbles distri…

cond-mat.stat-mech2019

Bodies in an Interacting Active Fluid: Far-Field Influence of a Single Body and Interaction Between Two Bodies

Omer Granek, Yongjoo Baek, Yariv Kafri +1

Because active particles break time-reversal symmetry, an active fluid can sustain currents even without an external drive. We show that when a passive body is placed in a fluid of…

cond-mat.stat-mech2019

Ramifications of disorder on active particles in one dimension

Ydan Ben Dor, Eric Woillez, Yariv Kafri +2

The effects of quenched disorder on a single and many active run-and-tumble particles is studied in one dimension. For a single particle, we consider both the steady-state distribu…

cond-mat.stat-mech2018

Response of active Brownian particles to shear flow

Kiryl Asheichyk, Alexandre P. Solon, Christian M. Rohwer +1

We study the linear response of interacting active Brownian particles in an external potential to simple shear flow. Using a path integral approach, we derive the linear response o…

cond-mat.stat-mech2018

Generalized thermodynamics of Motility-Induced Phase Separation: Phase equilibria, Laplace pressure, and change of ensembles

Alexandre P. Solon, Joakim Stenhammar, Michael E. Cates +2

Motility-induced phase separation (MIPS) leads to cohesive active matter in the absence of cohesive forces. We present, extend and illustrate a recent generalized thermodynamic for…