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Semiconductor Physics Group
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Research overview
Carbon Electronics
Carbon Electronics overview
Electrically Contacting Molecules Using Graphene for Energy Harvesting
Graphene quantum dots
Scanning Probe Microscopy (SPM) of Graphene
Surface acoustic waves (SAWs)
Surface acoustic waves (SAWs) overview
SAW-driven quantised charge transport
The use of SAWs to manipulate quantum bits (qubits)
Playing ping-pong with single electrons
A single-photon production line driven by a sound wave
Molecular Beam Epitaxy
Terahertz Research
Terahertz Research overview
Longer wavelength QCLs
Multi-colour QCLs
Photonic crystal QCLs
Gain Measurements
Distributed feedback QCLs
Mode locking
Quantum Optics
Quantum Optics overview
Self-assembled quantum dots
Solid-state photonic interfaces based on single quantum dots and quantum dot molecules
2D Transport
2D Transport overview
Coupled Two-Dimensional Electron or Hole Gases
Electron hole bilayers
1D Transport
1D Transport overview
Spin-charge separation in quantum wires
Testing theories that go beyond the regime of applicability of Luttinger-liquid theory
Incipient formation of an electron lattice in weakly confined quantum wires
Quantum Dot Refrigeration
Fundamentals of low-dimensional semiconductor systems
Fundamentals of low-dimensional semiconductor systems overview
Introduction to low-dimensional systems
Electrons in few dimensions
Low-dimensional electron systems in a perpendicular magnetic field
Antidots
Surface Acoustic Waves (SAWs)
Low-temperature scanning probes
PhD projects
PhD projects overview
An Optical Single-Electron Spin Detector
Measuring spin-charge separation and high-energy effects in an interacting 1D Luttinger Liquid
A Single-photon Source and Quantum Computation with Surface Acoustic Waves
Antidots – Many-body Effects
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