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Quasi-Hydrodynamic Semiconductor Equations (Softcover Reprint of the Original 1st 2001)

Quasi-hydrodynamic Semiconductor Equations

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"Quasi-hydrodynamic Semiconductor Equations" by Ansgar Jüngel is a mathematics book and learning resource focused on Devices & Sensors. Best for teachers, students, and readers looking for stronger mathematical understanding.

This book presents a hierarchy of macroscopic models for semiconductor devices, studying three classes of models in detail: isentropic drift-diffusion equations, energy-transport models, and quantum hydrodynamic equations. The derivation of each, including physical discussions, is shown. Numerical simulations for modern semiconductor devices are performed, showing the particular features of each. The author develops modern analytical techniques, such as positive solution methods, local energy methods for free-boundary problems and entropy methods.

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Best For: Researchers and graduate students in semiconductor physics and applied mathematics
Focus: Macroscopic modeling of semiconductor devices using drift-diffusion, energy-transport, and quantum hydrodynamic equations
Covers: Derivation of semiconductor models, physical discussions, and numerical simulations of device behavior
Why It Matters: Provides detailed analytical and numerical approaches to understand and simulate modern semiconductor devices

"Quasi-hydrodynamic Semiconductor Equations" by Ansgar Jüngel is a mathematics book and learning resource focused on Devices & Sensors. Best for teachers, students, and readers looking for stronger mathematical understanding.

Topic: Devices & Sensors

Author: Ansgar Jüngel

Who this is for:

  • Teachers and classroom instructors
  • Students building subject mastery
  • Readers looking for practical learning support

Why this book matters: It stands out as a practical math resource that helps explain concepts, strengthen problem-solving, and support classroom or independent learning.

This book presents a hierarchy of macroscopic models for semiconductor devices, studying three classes of models in detail: isentropic drift-diffusion equations, energy-transport models, and quantum hydrodynamic equations. The derivation of each, including physical discussions, is shown. Numerical simulations for modern semiconductor devices are performed, showing the particular features of each. The author develops modern analytical techniques, such as positive solution methods, local energy methods for free-boundary problems and entropy methods.

AuthorAnsgar Jüngel
PublisherBirkhäuser
Published2012-10-21
ISBN-139783034895217
BindingPaperback
Pages293
LanguageEnglish
SubjectsMathematics
TopicDevices & Sensors
SeriesProgress in Nonlinear Differential Equations and Their Appli

Format: Paperback

Length: 293 pages

Language: English

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