Related Experiment Video
Updated: Jan 21, 2026

In Situ Mapping of the Mechanical Properties of Biofilms by Particle-tracking Microrheology
Published on: December 4, 2015
Active particles sense micromechanical properties of glasses
Celia Lozano1, Juan Ruben Gomez-Solano1,2, Clemens Bechinger3
1Fachbereich Physik, Universität Konstanz, Konstanz, Germany.
Abstract:
Understanding the mechanical properties of glasses is a great scientific challenge. A powerful technique to study the material response on a microscopic scale is microrheology, in which one analyses the translational dynamics of an externally driven probe particle. Here we show that the translational and rotational dynamics of a self-propelled probe particle with an unconstrained orientational motion can be used to gather information about the mechanical properties of a colloidal glassy system. We find that its rotational diffusion coefficient continuously increases towards the glass transition and drops down in the glassy state. Such unexpected behaviour demonstrates a strong coupling mechanism between the orientation of the active probe particle and the glassy structure, which can be well described by a simple rheological model. Our results suggest that active probe particles may be useful for the micromechanical characterization of complex materials.
Related Concept Videos
Properties of Enantiomers and Optical Activity
The Looking Glass Self
The Sense of Self: Reflected Self-Appraisal and Social Comparison
Subatomic Particles
General Properties of Solutions
Introduction to Special Senses

