Skip to main navigation
Skip to search
Skip to main content
Experts@Minnesota Home
Home
Profiles
Research units
University Assets
Projects and Grants
Research output
Datasets
Press/Media
Activities
Fellowships, Honors, and Prizes
Impacts
Search by expertise, name or affiliation
Observation of discrete energy levels in a quantum confined system
L. L A Adams
, B. W. Lang
, A. M. Goldman
Physics and Astronomy (Twin Cities)
Research output
:
Contribution to journal
›
Article
›
peer-review
10
Scopus citations
Overview
Fingerprint
Fingerprint
Dive into the research topics of 'Observation of discrete energy levels in a quantum confined system'. Together they form a unique fingerprint.
Sort by
Weight
Alphabetically
Keyphrases
Discrete Energy Method
100%
Quantum Confined Systems
100%
Current-voltage Characteristics
66%
Low Temperature
33%
Microscope Image
33%
Random Matrix Theory
33%
Image Data
33%
Spectroscopic Data
33%
Peak Voltage
33%
Substrate Surface
33%
Eigenstates
33%
Sub-nanometer
33%
Resonant Tunneling
33%
Scanning Tunneling Microscope
33%
Wigner
33%
Buffer Layer
33%
Tunnel Technique
33%
Peak Current
33%
Temperature Scanning
33%
Porter-Thomas Distribution
33%
Current Step
33%
Current Peak
33%
Engineering
Current-Voltage Characteristic
100%
Low-Temperature
50%
Substrate Surface
50%
Scanning Tunneling Microscope
50%
Current Step
50%
Eigenvector
50%
Resonant Tunneling
50%
Matrix Theory
50%
Buffer Layer
50%
Physics
Resonant Tunneling
100%
Scanning Tunneling Microscope
100%
Material Science
Current Voltage Characteristics
100%
Buffer Layer
50%
Surface (Surface Science)
50%