quantum dots
Physics & Astronomy
100%
Kondo effect
Engineering & Materials Science
53%
Quantum Dot
Chemical Compounds
46%
Electrons
Engineering & Materials Science
41%
Kondo Effect
Chemical Compounds
31%
Magnetic fields
Engineering & Materials Science
23%
electrons
Physics & Astronomy
23%
spin-orbit interactions
Physics & Astronomy
22%
Kondo effect
100%
quantum dots
62%
interferometers
14%
reciprocity theorem
12%
geometry
10%
Phase shift
100%
plateaus
87%
Quantum Dot
82%
Kondo effect
78%
Interferometers
76%
Quantum Dot
100%
Interferometers
92%
Resonance
89%
quantum dots
87%
Transport properties
47%
Topological insulators
100%
Carbon nanotubes
77%
Magnetic Field
68%
Single Walled Nanotube
67%
Magnetic fields
63%
Kim, H. ,
Park, S. ,
Okuyama, R. ,
Kyhm, K. ,
Eto, M. ,
Taylor, R. A. ,
Nogues, G. ,
Dang, L. S. ,
Potemski, M. ,
Je, K. ,
Kim, J. ,
Kyhm, J. &
Song, J. ,
2018 10月 10 ,
In: Nano Letters. 18 ,
10 ,
p. 6188-6194 7 p. 研究成果: Article › 査読
Excitons
100%
gallium arsenide
96%
Biexciton
68%
Orbit
62%
Electrons
45%