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The Thermoballistic Transport Model - A Novel Approach to Charge Carrier Transport in Semiconductors (Hardcover, 2014 ed.):... The Thermoballistic Transport Model - A Novel Approach to Charge Carrier Transport in Semiconductors (Hardcover, 2014 ed.)
Reinhard Lipperheide, Uwe Wille
R3,947 R3,370 Discovery Miles 33 700 Save R577 (15%) Ships in 12 - 17 working days

The book presents a comprehensive survey of the thermoballistic approach to charge carrier transport in semiconductors. This semi-classical approach, which the authors have developed over the past decade, bridges the gap between the opposing drift-diffusion and ballistic models of carrier transport. While incorporating basic features of the latter two models, the physical concept underlying the thermoballistic approach constitutes a novel, unifying scheme. It is based on the introduction of "ballistic configurations" arising from a random partitioning of the length of a semiconducting sample into ballistic transport intervals. Stochastic averaging of the ballistic carrier currents over the ballistic configurations results in a position-dependent thermoballistic current, which is the key element of the thermoballistic concept and forms the point of departure for the calculation of all relevant transport properties. In the book, the thermoballistic concept and its implementation are developed in great detail and specific examples of interest to current research in semiconductor physics and spintronics are worked out.

The Thermoballistic Transport Model - A Novel Approach to Charge Carrier Transport in Semiconductors (Paperback, Softcover... The Thermoballistic Transport Model - A Novel Approach to Charge Carrier Transport in Semiconductors (Paperback, Softcover reprint of the original 1st ed. 2014)
Reinhard Lipperheide, Uwe Wille
R3,357 Discovery Miles 33 570 Ships in 10 - 15 working days

The book presents a comprehensive survey of the thermoballistic approach to charge carrier transport in semiconductors. This semi-classical approach, which the authors have developed over the past decade, bridges the gap between the opposing drift-diffusion and ballistic models of carrier transport. While incorporating basic features of the latter two models, the physical concept underlying the thermoballistic approach constitutes a novel, unifying scheme. It is based on the introduction of "ballistic configurations" arising from a random partitioning of the length of a semiconducting sample into ballistic transport intervals. Stochastic averaging of the ballistic carrier currents over the ballistic configurations results in a position-dependent thermoballistic current, which is the key element of the thermoballistic concept and forms the point of departure for the calculation of all relevant transport properties. In the book, the thermoballistic concept and its implementation are developed in great detail and specific examples of interest to current research in semiconductor physics and spintronics are worked out.

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