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Inverse Bauschinger effect in active ultrastable glasses.

Rashmi Priya1, Smarajit Karmakar1

  • 1Tata Institute of Fundamental Research, 36/P, Gopanpally Village, Serilingampally Mandal, Ranga Reddy District, Hyderabad 500046, India.

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Summary
This summary is machine-generated.

Ultrastable glasses exhibit reversible memory effects when subjected to active particles and shear. This structural memory allows the material to heal upon shear reversal, offering insights into active amorphous solids.

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Area of Science:

  • Materials Science
  • Physics
  • Soft Matter Physics

Background:

  • Memory effects in amorphous materials are crucial for future applications.
  • Ultrastable glasses are a key area of research in materials science.

Purpose of the Study:

  • To investigate memory effects in ultrastable glasses under combined active particle driving and global shear.
  • To analyze the influence of shear direction changes on yielding and structural evolution.

Main Methods:

  • Utilizing a model system of ultrastable glasses with run-and-tumble active particles.
  • Applying global shear with selective direction reversal at different strain points.
  • Analyzing yielding, post-yield behavior, and structural evolution.

Main Results:

  • Ultrastable glasses exhibit transient reversible memory effects.
  • The system displays anisotropic responses, including conventional and inverse Bauschinger effects.
  • Activity-induced shear bands create structural memory, facilitating healing upon shear reversal.
  • Cyclic loading leads to shear softening and a transition in network structure.

Conclusions:

  • Active particles and shear collectively influence mechanical response and memory formation in disordered systems.
  • Structural memory in active amorphous solids is transient and depends on deformation history.
  • Findings provide insights into the mechanical behavior and healing mechanisms of ultrastable glasses.