Presentation Information
[1A02]Toward Neuromorphic Information Processing in Molecular Systems Composed of a Small Number of Molecules
*Takuya Matsumoto1,2 (1. Osaka University (Japan), 2. Kyushu Institute of Technology (Japan))
The development of scanning probe microscopy has made it possible to access individual atoms and molecules, raising great expectations for atomic switches and molecular electronics. However, the pathway by which such single-atom and single-molecule phenomena can be connected to macroscopic electronic transport, and ultimately to functional devices, remains far from clear.
In this talk, I would like to take a step beyond single-molecule measurements and discuss how embracing individual randomness, rather than treating it merely in statistical terms, may open a pathway toward biologically inspired strategies in which function emerges through learning, as in neuromorphic information processing.
In this talk, I would like to take a step beyond single-molecule measurements and discuss how embracing individual randomness, rather than treating it merely in statistical terms, may open a pathway toward biologically inspired strategies in which function emerges through learning, as in neuromorphic information processing.
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