International Conference (5th) on Intersubband Transitions in Quantum Wells. ITQW'99, Programs and Abstracts, Held in Bad Ischl, Austria on 7-11 Sep 1999

Abstract

5TH International Conference on Intersubband Transitions in Quantum Wells. ITWQW'99. Program and Abstracts. 7-11 September 1999, Bad Ischl, Austria. The scope of the conference will cover all phenomena related to intersubband transitions in quantum wells, wires and dots, both basic and applied, the relevant spectral range thus extending from 2 to 200 micrometers. Special emphasis is put on the recent developments in mid-infrared intersubband lasers. In a addition, a session on Bloch oscillations in superlattices and other THz phenomena is included. Conference Topics are: Intersubband emission and lasers; Quantum well infrared detectors (QWIPs); Nonlinear and coherent optical effects; Collective and many-body effects; Intersubband relaxation; Intersubband transitions in quantum wires and dots; Bloch oscillations in superlattices and other THz phenomena; Intersubband transitions in novel materials.

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Document Details

Document Type
Technical Report
Publication Date
Jan 01, 1999
Accession Number
ADA389287

Entities

People

  • Karl Unterrainer
  • Manfred Helm

Organizations

  • Johannes Kepler University Linz

Tags

Communities of Interest

  • Advanced Electronics
  • Air Platforms
  • Energy and Power Technologies

DTIC Thesaurus Topics

  • Crystal Lattice Vibrations
  • Electromagnetic Metamaterials
  • Electromagnetic Scattering
  • Electronics Laboratories
  • Infrared Detectors
  • Metamaterial Absorbers
  • Modules (Electronics)
  • Optical Properties
  • Optics
  • Polaritons
  • Power Electronics
  • Quantum Cascade Lasers
  • Quantum Computing
  • Quantum Wells
  • Quantum Yields
  • Semiconductors
  • Solid State Physics

Fields of Study

  • Materials science

Readers

  • Academic Conference Management
  • Quantum Dot Semiconductor Device Photonics and Graphene Optoelectronic Materials and THz Physics.

Technology Areas

  • Directed Energy
  • Quantum Computing