Evolution Equations for Highly Excited Direct Semiconductors in the Athermal Stage- Entropy and Entropy Production
Author:
Publisher
Wiley
Subject
Condensed Matter Physics,Electronic, Optical and Magnetic Materials
Reference19 articles.
1. Integro-Differential Equations for the Evolution in the Athermal Pre-Electron–Hole Plasma State of an Irradiated Direct Semiconductor
2. Evolution Equations for Highly Excited Direct Semiconductors in the Athermal Stage
3. Response function theory for far-from-equilibrium statistical systems
4. Extended time-dependent mean-field theories from the maximum-entropy principle
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1. Far from equilibrium evolution in highly excited semiconductors with a consistent treatment of the photon field;Physica Scripta;1993-03-01
2. Solutions of optical Bloch equations for highly excited direct gap semiconductors in a time-dependent mean-field approach;Physica Scripta;1992-07-01
3. Dynamics of a Two-Level System in a Classical Field–A Description in Different Observation Levels;Europhysics Letters (EPL);1992-06-15
4. Entropy of the Photon Field in Laser-Excited Semiconductors;physica status solidi (b);1991-09-01
5. Closed solutions for off-resonant excited excitons in the athermal stage of direct gap semiconductors;Physica Scripta;1991-03-01
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