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Organismic materials for beyond von Neumann machines
Hai Tian Zhang
, Priyadarshini Panda
, Jerome Lin
, Yoav Kalcheim
, Kai Wang
, John W. Freeland
, Dillon D. Fong
, Shashank Priya
, Ivan K. Schuller
, Subramanian K.R.S. Sankaranarayanan
, Kaushik Roy
, Shriram Ramanathan
Materials Science and Engineering
Office of the Senior Vice President for Research
Research output
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Contribution to journal
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Review article
›
peer-review
38
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Keyphrases
Phase Change
100%
Order of Magnitude
50%
Non-neural
50%
Electronic Properties
50%
Thermal Field
50%
Dynamical Response
50%
Insulator-metal Transition
50%
Synapse
50%
Semiconductors
50%
Neural Circuits
50%
Central Nervous System
50%
State Response
50%
Volatility
50%
Ambient Conditions
50%
Structural Phase Transition
50%
Artificial Intelligence
50%
Social Interaction
50%
Intermediate State
50%
Electrical Field
50%
Band Theory
50%
Electric Field-induced Strain
50%
External Stimuli
50%
Hardware Components
50%
Collective Behavior
50%
Electronic Transitions
50%
Changing Systems
50%
Learning Characteristics
50%
Autonomous Systems
50%
Theoretical Treatment
50%
Medium Viscosity
50%
Transient Intermediates
50%
Chemical Doping
50%
Gel-based
50%
Slime Molds
50%
Social Feedback
50%
Microscopic Properties
50%
Artificial Neuron
50%
Non-von Neumann
50%
Collective Intelligence
50%
Behavior Treatment
50%
Multi-scale Features
50%
Learning Machine
50%
Correlated Oxides
50%
Machine System
50%
Complex Connection
50%
Interaction with the Environment
50%
Digital Behavior
50%
Artificial Synapse
50%
Computing Machine
50%
Neuroscience
Synapse
100%
Behavior (Neuroscience)
50%
Central Nervous System
50%
Social Interaction
50%
Collective Behavior
50%
Neural Circuit
50%
Artificial Intelligence
50%
Oxide
50%
Material Science
Electronic Circuit
100%
Oxide Compound
100%
Transition Metal
100%
Electronic Property
100%