【902】 Architecture of Allosteric Materials

23 Aug 2017, 14:30
30m
Talk Biophysics, Medical Physics and Soft Matter Biophysics, Medical Physics and Soft Matter

Speaker

Matthieu Wyart (EPFL)

Description

We introduce a numerical scheme to evolve functional elastic materials that can accomplish a specified mechanical task. In this scheme, the number of solutions, their spatial architectures and the correlations among them can be computed. As an example, we consider an "allosteric" task, which requires the material to respond specifically to a stimulus at a distant active site. We find that functioning materials evolve a less-constrained trumpet-shaped region connecting the stimulus and active sites, and that the amplitude of the elastic response varies non-monotonically along the trumpet.
Finally, we show that the success of this architecture stems from the emergence of soft edge modes recently found to appear near the surface of marginally connected materials. Overall, our in silico evolution experiment offers a new window to study the relationship between structure, function and correlations emerging during evolution.

Author

Matthieu Wyart (EPFL)

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