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- W2015431383 abstract "An investigation is made of a reaction kinetic model in which the generation rate of conduction electrons is assumed to be proportional to the number of occupied traps in the appropriate energy-range. Solutions of the steady-state and transient concentrations of conduction electrons are obtained. The influence of various trap distributions (discrete level, homogeneous, exponential and Gaussian) is investigated in detail. The quantum efficiency increases with increasing electron concentration and results in a superlinearity and an S-shaped growth of photocurrent. The change of the quantum efficiency with the electron concentration is virtually determined by the decay or half width, respectively, of the trap distribution.Es wird ein reaktionskinetisches Modell betrachtet, in dem die Anregungsrate der Leitungselektronen proportional zur Zahl in einem bestimmten Energiebereich gelegener, mit Elektronen besetzter Storstellen ist. Fur die Konzentration der Leitungselektronen werden Losungskurven des dem Modell entsprechenden Differentialgleichungssystems fur den stationaren und nichtstationaren Fall diskutiert. Besonders wird der Einflus verschiedenartiger Termverteilungen (diskreter Term; homogene, exponentielle, Gaus-Verteilung) untersucht. Man erhalt eine mit der Elektronenkonzentration wachsende Quantenausbeute, die eine Superlinearitat des stationaren Photostromes sowie einen S-formigen Anklingverlauf zur Folge hat. Die Anderungen der Quantenausbeute mit der Elektronenkonzentration sind im wesentlichen durch die Abfall- bzw. Halbwertsbreiten der Termverteilungen bestimmt." @default.
- W2015431383 created "2016-06-24" @default.
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- W2015431383 date "1964-01-01" @default.
- W2015431383 modified "2023-09-27" @default.
- W2015431383 title "Investigations of Photoconductivity in a Reaction Kinetic Model Involving an Indirect Generation Process" @default.
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- W2015431383 doi "https://doi.org/10.1002/pssb.19640070222" @default.
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