NUSOD 2011 - 2011 11th International Conference on Numerical Simulation of Optoelectronic Devices (NUSOD)
Topics/Call fo Papers
The NUSOD conference intends to connect theory and practice in optoelectronics. Papers are solicited on the modeling, simulation, and analysis of optoelectronic devices including materials, fabrication, and application. Academic researchers, device engineers, and software developers are invited to discuss the advancement and the practical use of numerical tools in photonics and electronics.
Devices of interest include
Semiconductor lasers
Light emitting diodes
Optical modulators
Optical amplifiers
Photodetectors
Solar Cells
Photonic Devices and Circuits
Optoelectronic Integrated Circuits
Topics of interest include but are not limited to
Novel materials, devices, and simulation tools
Design and optimization of optoelectronic devices
Analysis of device performance and internal processes
Electron-photon interaction and plasmonics
Physics and theory of nanostructures
Polariton lasing in microcavities
Photonic crystal structures and devices
Material properties incl. metamaterials
Organic materials and devices
Fabrication process theory and simulation
Packaging and integration issues
Photonic integrated circuits and systems
Terahertz photonics
Noise modeling and simulation
Ultrafast effects and dynamical phenomena
High-speed devices and photonic links
Coupling of electronic, optical, and thermal simulations
Mathematical models and numerical methods
Calibration and validation of models and material parameters
Devices of interest include
Semiconductor lasers
Light emitting diodes
Optical modulators
Optical amplifiers
Photodetectors
Solar Cells
Photonic Devices and Circuits
Optoelectronic Integrated Circuits
Topics of interest include but are not limited to
Novel materials, devices, and simulation tools
Design and optimization of optoelectronic devices
Analysis of device performance and internal processes
Electron-photon interaction and plasmonics
Physics and theory of nanostructures
Polariton lasing in microcavities
Photonic crystal structures and devices
Material properties incl. metamaterials
Organic materials and devices
Fabrication process theory and simulation
Packaging and integration issues
Photonic integrated circuits and systems
Terahertz photonics
Noise modeling and simulation
Ultrafast effects and dynamical phenomena
High-speed devices and photonic links
Coupling of electronic, optical, and thermal simulations
Mathematical models and numerical methods
Calibration and validation of models and material parameters
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Last modified: 2011-01-05 17:09:59