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Transport through Andreev bound states in a graphene quantum dot
Travis Dirks
,
Taylor L. Hughes
, Siddhartha Lal
, Bruno Uchoa
, Yung Fu Chen
, Cesar Chialvo
, Paul M. Goldbart
,
Nadya Mason
Physics
Materials Research Lab
Research output
:
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›
peer-review
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Keyphrases
Andreev Bound States
100%
Graphene Quantum Dots
100%
Quantum Dots
80%
Superconductor
60%
Graphene
40%
Gate Voltage
40%
Superconducting Contacts
40%
Density of States
20%
Low Density
20%
Transport Measurements
20%
Supercurrent
20%
Cooper Pairs
20%
Non-superconducting
20%
Andreev Reflection
20%
Superconducting Materials
20%
Confined Geometry
20%
Low-energy Electrons
20%
Zero Energy
20%
Normal System
20%
Gate-tunable
20%
Proximity Coupling
20%
Work Function
20%
Solid-state Qubits
20%
Bound State Spectrum
20%
State Form
20%
Exfoliated Graphene Sheets
20%
Material Science
Superconducting Material
100%
Quantum Dot
100%
Graphene Quantum Dot
100%
Graphene
75%
Density
25%