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Normal, superconducting and topological regimes of hybrid double quantum dots
Daniel Sherman, J.S. Yodh, Sven Marian Albrecht,
Jesper Nygård
,
Peter Krogstrup
,
Charles M. Marcus
Condensed Matter Physics
32
Citations (Scopus)
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Dive into the research topics of 'Normal, superconducting and topological regimes of hybrid double quantum dots'. Together they form a unique fingerprint.
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Engineering & Materials Science
Superconductivity
100%
Magnetic fields
85%
Nanowires
80%
Semiconductor materials
57%
Ground state
48%
Carrier concentration
46%
Hybrid materials
45%
Superconducting materials
42%
Electric potential
16%
Chemical Compounds
Magnetic Field
91%
Quantum Dot
86%
Superconductivity
75%
Superconducting Gap
64%
Nanowire
56%
Ground State
25%
Semiconductor
24%
Energy
15%
Physics & Astronomy
quantum dots
75%
superconductivity
54%
nanowires
52%
magnetic fields
48%
retaining
35%
charging
30%
flat surfaces
29%
spacing
25%
ground state
21%
electric potential
17%
energy
9%