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The Physics of Instabilities in Solid State Electron Devices (1992)

The Physics of Instabilities in Solid State Electron Devices

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"The Physics of Instabilities in Solid State Electron Devices" by Harold L. Grubin, V.V. Mitin, E. Schöll, M.P. Shaw is a physics book focused on Devices & Sensors. Best for students, educators, and scientifically curious readers.

The past three decades have been a period where useful current and voltage instabilities in solids have progressed from exciting research problems to a wide variety of commercially available devices. Materials and electronics research has led to devices such as the tunnel (Esaki) diode, transferred electron (Gunn) diode, avalanche diodes, real-space transfer devices, and the like. These structures have proven to be very important in the generation, amplification, switching, and processing of microwave signals up to frequencies exceeding 100 GHz. In this treatise we focus on a detailed theoretical understanding of devices of the kind that can be made unstable against circuit oscillations, large amplitude switching events, and in some cases, internal rearrangement of the electric field or current density distribution. The book is aimed at the semiconductor device physicist, engineer, and graduate student. A knowledge of solid state physics on an elementary or introductory level is assumed. Furthermore, we have geared the book to device engineers and physicists desirous of obtaining an understanding substantially deeper than that associated with a small signal equivalent circuit approach. We focus on both analytical and numerical treatment of specific device problems, concerning ourselves with the mechanism that determines the constitutive relation governing the device, the boundary conditions (contact effects), and the effect of the local circuit environment.

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Best For: Researchers and engineers working with solid state electron devices and materials science.
Focus: Exploring current and voltage instabilities in solid materials and their application in electronic devices.
Covers: Development and characteristics of devices like tunnel diodes, Gunn diodes, avalanche diodes, and real-space transfer devices.
Why It Matters: Understanding instabilities in solid state devices is crucial for advancing electronic components used in various technologies.

"The Physics of Instabilities in Solid State Electron Devices" by Harold L. Grubin, V.V. Mitin, E. Schöll, M.P. Shaw is a physics book focused on Devices & Sensors. Best for students, educators, and scientifically curious readers.

Topic: Devices & Sensors

Author: Harold L. Grubin, V.V. Mitin, E. Schöll, M.P. Shaw

Who this is for:

  • Physics students
  • Science-minded readers
  • Readers building technical understanding

Why this book matters: It provides structured coverage of physics concepts in a way that supports deeper understanding and continued study.

The past three decades have been a period where useful current and voltage instabilities in solids have progressed from exciting research problems to a wide variety of commercially available devices. Materials and electronics research has led to devices such as the tunnel (Esaki) diode, transferred electron (Gunn) diode, avalanche diodes, real-space transfer devices, and the like. These structures have proven to be very important in the generation, amplification, switching, and processing of microwave signals up to frequencies exceeding 100 GHz. In this treatise we focus on a detailed theoretical understanding of devices of the kind that can be made unstable against circuit oscillations, large amplitude switching events, and in some cases, internal rearrangement of the electric field or current density distribution. The book is aimed at the semiconductor device physicist, engineer, and graduate student. A knowledge of solid state physics on an elementary or introductory level is assumed. Furthermore, we have geared the book to device engineers and physicists desirous of obtaining an understanding substantially deeper than that associated with a small signal equivalent circuit approach. We focus on both analytical and numerical treatment of specific device problems, concerning ourselves with the mechanism that determines the constitutive relation governing the device, the boundary conditions (contact effects), and the effect of the local circuit environment.

AuthorHarold L. Grubin, V.V. Mitin, E. Schöll, M.P. Shaw
PublisherSpringer Science & Business Media
Published1992-01-31
ISBN-139780306437885
BindingHardcover
Pages485
LanguageEnglish
SubjectsScience
TopicDevices & Sensors

Format: Hardcover

Length: 485 pages

Language: English

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