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Energy levels of hybrid monolayer-bilayer graphene quantum dots
M. Mirzakhani
, M. Zarenia
, S. A. Ketabi
, D. R. Da Costa
, F. M. Peeters
Electrical and Computer Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
33
Scopus citations
Overview
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Keyphrases
Energy Levels
100%
Bilayer Graphene
100%
Graphene Quantum Dots
100%
Quantum Dots
14%
Bound States
14%
Graphene
14%
Analytical Results
14%
Interface States
14%
Energy Gap
14%
Zigzag
14%
Continuum Model
14%
Perpendicular Magnetic Field
14%
Anticrossing
14%
Graphene Interface
14%
Real Samples
14%
Spinors
14%
Bias Potential
14%
Bilayer Graphene Sheets
14%
Perpendicular Electric Field
14%
Hybrid Quantum Dots
14%
Physics
Graphene Quantum Dots
100%
Graphene
100%
Quantum Dot
40%
Boundary Condition
20%
Magnetic Field
20%
Electric Field
20%
Interface State
20%