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Bistable states of quantum dot array junctions for high-density memory
David M.T. Kuo
, Yia Chung Chang
Department of Electrical Engineering
Research output
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peer-review
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Keyphrases
Quantum Dot Arrays
100%
High-density Memory
100%
Conduction Band
75%
Two Dimensional
75%
Tunneling Current
50%
P Orbital
50%
Quantum Dots
25%
High Density
25%
Low Power Consumption
25%
Anderson Model
25%
Tunneling Rate
25%
Coupled Quantum Dots
25%
Two-dimensional Array
25%
Coulomb Interaction
25%
Green Method
25%
On-site Coulomb Interaction
25%
Memory Device
25%
Electrical Bistability
25%
Nanoscale Structure
25%
Engineering
Quantum Dot
100%
Bistables
100%
Two Dimensional
66%
Tunnel Construction
50%
Coulomb Interaction
33%
Conduction Band
33%
Nanomaterial
16%
Low Power Consumption
16%
One Dimensional
16%
Band Width
16%
High Packing Density
16%
Dimensional Array
16%
Conduction Band State
16%
Green's Functions
16%
Chemistry
Quantum Dot
100%
Conduction Band
50%
Tunneling Current
33%
Anderson Model
16%
Tight Binding Model
16%
Nanomaterial
16%
Physics
Quantum Dot
100%
Conduction Band
50%
Green's Functions
16%
Packing Density
16%
Bandwidth
16%
Nanomaterial
16%
Material Science
Density
100%
Quantum Dot
100%