Cyclically sheared jammed packings form memories of the shear amplitude at which they were trained by falling into periodic orbits where each particle returns to the identical position in subsequent cycles. While simple models that treat clusters of rearranging particles as isolated two-state systems offer insight into this memory formation, they fail to account for the long training times and multi-period orbits observed in simulated sheared packings. We show that adding interactions between rearranging clusters overcomes these deficiencies. In addition, interactions allow simultaneous encoding of multiple memories which would not have been possible otherwise. These memories are different in an essential way from those found in other syste...
We show that memory can be encoded in a model amorphous solid subjected to athermal oscillatory shea...
New experiences can be memorized by modifying the synaptic efficacies. Old memories are partially ov...
We study the dynamics of clusters of Active Brownian Disks generated by Motility-Induced Phase Separ...
Studies of glassy systems have shown how cyclic driving forms memories of amplitude. We explore how ...
Bi-stable objects that are pushed between states by an external field are often used as a simple mod...
Multiple transient memories, originally discovered in charge-density-wave conductors, are a remarkab...
We offer an alternative real-space description based purely on activated processes for the understan...
Out-of-equilibrium disordered systems may form memories of external driving in a remarkable fashion....
A system has the ability to store memory if one is able to write, retrieve, and erase information fr...
A system with multiple transient memories can remember a set of inputs but subsequently forgets almo...
The discovery that memory of particle configurations and plastic events can be stored in amorphous s...
We study a model amorphous solid that is subjected to repeated athermal cyclic shear deformation. It...
Many classes of active matter develop spatial memory by encoding information in space, leading to co...
Phase separation plays a central role in the emergence of novel functionalities of correlated electr...
Information storage is a key element of autonomous, out-of-equilibrium dynamics, especially for biol...
We show that memory can be encoded in a model amorphous solid subjected to athermal oscillatory shea...
New experiences can be memorized by modifying the synaptic efficacies. Old memories are partially ov...
We study the dynamics of clusters of Active Brownian Disks generated by Motility-Induced Phase Separ...
Studies of glassy systems have shown how cyclic driving forms memories of amplitude. We explore how ...
Bi-stable objects that are pushed between states by an external field are often used as a simple mod...
Multiple transient memories, originally discovered in charge-density-wave conductors, are a remarkab...
We offer an alternative real-space description based purely on activated processes for the understan...
Out-of-equilibrium disordered systems may form memories of external driving in a remarkable fashion....
A system has the ability to store memory if one is able to write, retrieve, and erase information fr...
A system with multiple transient memories can remember a set of inputs but subsequently forgets almo...
The discovery that memory of particle configurations and plastic events can be stored in amorphous s...
We study a model amorphous solid that is subjected to repeated athermal cyclic shear deformation. It...
Many classes of active matter develop spatial memory by encoding information in space, leading to co...
Phase separation plays a central role in the emergence of novel functionalities of correlated electr...
Information storage is a key element of autonomous, out-of-equilibrium dynamics, especially for biol...
We show that memory can be encoded in a model amorphous solid subjected to athermal oscillatory shea...
New experiences can be memorized by modifying the synaptic efficacies. Old memories are partially ov...
We study the dynamics of clusters of Active Brownian Disks generated by Motility-Induced Phase Separ...