activity
20242026
most citedFree chiral self-propelled robots compared to active Brownian circle swimmers

1 citations · 1 across the 3 of their papers we have counts for

collaborators

7 papers

physics.chem-ph2026

Stochastic Resetting: A Non-Equilibrium Framework for Prediction, Inference and Design

Tommer D. Keidar, Sagi Meir, Nir Sherf +4

Stochastic resetting has evolved from a simple model of diffusive search acceleration into a general framework for predicting, inferring, and controlling stochastic dynamics far fr…

cond-mat.stat-mech2026

A particle-resolved rheological study of chirality transfer and odd transport

Rémi Goerlich, Alexander P. Antonov, Kristian Stølevik Olsen +4

Chirality, or the breaking of mirror symmetry, appears across all scales in nature, from molecular conformations to the dynamics of bacterial collectives. Environments composed of…

cond-mat.soft20261 cited

Free chiral self-propelled robots compared to active Brownian circle swimmers

Thomas Kiechl, Amy Altshuler, Anton Lüders +2

Macroscopic active matter systems, such as bristle bots, provide a compelling platform for investigating nonequilibrium dynamics at highly visible scales. To fully leverage their a…

cond-mat.soft2025

Channel Formation Enhances Target Consumption by Chemotactic Active Brownian Particles

Vladimir Yu. Rudyak, Shahar Shinehorn, Yael Roichman

In many situations, simply finding a target during a search is not enough. It is equally important to be able to return to that target repeatedly or to enable a larger community to…

cond-mat.soft2025

Many-Body Colloidal Dynamics under Stochastic Resetting: Competing Effects of Particle Interactions on the Steady State Distribution

Ron Vatash, Yael Roichman

The random arrest of the diffusion of a single particle and its return to its origin has served as the paradigmatic example of a large variety of processes undergoing stochastic re…

cond-mat.stat-mech2024

Numerical prediction of the steady-state distribution under stochastic resetting from measurements

Ron Vatash, Amy Altshuler, Yael Roichman

A common and effective method for calculating the steady-state distribution of a process under stochastic resetting is the renewal approach that requires only the knowledge of the…