Physics
Graphene
100%
Magnetic Field
86%
Electron Gas
64%
Yttrium-Iron Garnet
44%
Magnetoresistance
44%
Spintronics
39%
Spin Valve
39%
Room Temperature
38%
Seebeck Effect
37%
Spin Relaxation
35%
Photoelectric Emission
30%
Magnon
29%
Injector
19%
Hexagonal Boron Nitride
18%
Electron Spin
16%
Anisotropy
16%
Heterojunctions
15%
Spin Polarization
15%
Relaxation Time
12%
Ferromagnetic Resonance
12%
Quantum Wells
11%
Josephson Junction
11%
Constriction
11%
Electric Fields
10%
Transport Property
10%
Van Der Waals Heterostructures
10%
Quantum Hall Effect
10%
Quantum Dot
10%
Spin-Orbit Interaction
9%
Tunnel Junction
9%
Thin Films
9%
Backscattering
9%
Selectivity
8%
Nanoscale
8%
Chirality
8%
Transition Metal Dichalcogenide
8%
Spin Diffusion
7%
Finite Element Modeling
7%
Temperature Dependence
6%
Critical Current
6%
Temperature Gradients
6%
Spin Dynamics
6%
Two-Dimensional Materials
6%
Magnetic Anisotropy
5%
Field Effect Transistor
5%
Quantization (Signal Processing)
5%
Fine Structure
5%
Peltier Effect
5%
Anisotropic Magnetoresistance
5%
Elementary Excitation
5%
Engineering
Graphene
58%
Magnetic Field
25%
Two Dimensional
24%
Magnetoelectronics
23%
Contact Point
21%
Heterostructures
20%
Seebeck Effect
18%
Room Temperature
17%
Ferromagnet
12%
Gallium Arsenide
11%
Superconductor
11%
Energy Engineering
10%
One Dimensional
9%
Peltier Effect
9%
Relaxation Time
9%
Relaxation Length
8%
Nitride
8%
Quantum Well
7%
Diffusive
7%
Thermoelectrics
7%
Charge Transport
6%
Heterojunctions
6%
Layer Graphene
6%
Thin Films
6%
Electric Field
6%
Aluminium Gallium Arsenide
6%
Nanoscale
6%
Line Shape
5%
Nanopillar
5%
Anisotropic
5%
Josephson Junction
5%
Temperature Dependence
5%
Seebeck Coefficient
5%
Field-Effect Transistor
5%
Keyphrases
2-dimensional Electron Gas (2DEG)
15%
Magnon
11%
Yttrium Iron Garnet
9%
Spin Transport
8%
Spin Injection
8%
Magnetoresistance
7%
Quantum Point Contact
7%
Oscillation
7%
Graphene
7%
Hexagonal Boron Nitride (h-BN)
6%
Berry Phase
5%
Sample-specific
5%
Specific Conductivity
5%
Conductance Fluctuations
5%
Point Contact
5%
Superconducting Phase
5%
Backscatter
5%
Conductance Oscillation
5%