Semiconductor Quantum Structures and Devices
This cluster of papers focuses on the physics and applications of quantum dot devices, semiconductor materials, and single-photon sources. It covers topics such as band parameters for III–V compound semiconductors, strong coupling in quantum dot–semiconductor microcavity systems, and the generation of entangled photons from single quantum dots. The research also delves into the electronic structure of quantum dots, electrically driven single-photon sources, and the development of near-optimal single-photon sources in the solid state.
Papers listed on taxonomy pages are the top few works per node from the OpenAlex snapshot. That list is not exhaustive and is not an endorsement. The topic map and the journal registry remain separate: there is still no authoritative topic-to-venue or topic-to-organization edge. Search is a lexical lookup, not a claim that a venue publishes a topic.
Most cited
- Band parameters for III–V compound semiconductors and their alloys
- Making Nonmagnetic Semiconductors Ferromagnetic
- Anomalous Optical Absorption Limit in InSb
- Band structure of indium antimonide
- GaAs, AlAs, and Al x Ga1− x As: Material parameters for use in research and device applications
- Defects in epitaxial multilayers I. Misfit dislocations
Most recent
- Tailoring electron transport dynamics via dual-modulation for balanced charge injection in InP QLEDs
- Geometry-controlled Third Harmonic Generation in spherical quantum dot heterostructures in the presence of a magnetic field
- Highly Spin‐Polarized Luminescent Quantum Nanomaterials Integrated with a Defect‐Enabled Spin‐Filtering Function
- El chip que quiere brillar GaAs sobre silicio: el camino hacia chips con luz integrada
- Excitation-dependent photoluminescence and photoreflectance in InGaAs/GaAs quantum dot bilayers: Comparison of undoped and n-doped configurations
- Simulation study of laser diode based GaInP/AlGaInP structure