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Essentials of Semiconductor Device Physics - by Emiliano R Martins (Paperback)

Essentials of Semiconductor Device Physics - by  Emiliano R Martins (Paperback) - 1 of 1
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About this item

Highlights

  • ESSENTIALS OF SEMICONDUCTOR DEVICE PHYSICS An introductory semiconductor device physics textbook that is accessible to readers without a background in statistical physics I wish this book had been available when I needed to make a Semiconductor class myself a few years ago [...] A very nice aspect is that some concepts (e.g. density of states) are explained in a way that I have not seen elsewhere.
  • About the Author: Emiliano R. Martins obtained his PhD in 2014 from the University of St. Andrews (UK) in the field of photonics, which deals with the interaction between light and matter in semiconductor devices.
  • 240 Pages
  • Science, Physics

Description



About the Book



"The subject of the book is the physics of semiconductors, an important topic in engineering and physics, which forms the background for electronic and optoelectronic devices, including solar cells. This text aims to provide students and teachers with a concise text that focuses on semiconductors and covers the necessary background in statistical physics. This text introduces the key pre-requisite knowledge in a simple, clear, and friendly manner; and distills the key concepts of semiconductors to their essentials, enabling students to master this key subject in physics, materials and engineering, and is suitable for a course of approximately 30 hours. The subject matter treated in this book is directly connected to the physics of solar cells, which has become a topic of intense interest in the last decade. Thus, all scientists studying and researching photovoltaics in general, and solar cells in particular, will benefit from the clear and intuitive explanations found in this book"--



Book Synopsis



ESSENTIALS OF SEMICONDUCTOR DEVICE PHYSICS

An introductory semiconductor device physics textbook that is accessible to readers without a background in statistical physics

I wish this book had been available when I needed to make a Semiconductor class myself a few years ago [...] A very nice aspect is that some concepts (e.g. density of states) are explained in a way that I have not seen elsewhere. These types of unconventional approaches are very valuable for a teacher. (Bjorn Maes, University of Mons, Belgium)

[...] the author offers an accessible description of statistical analysis and adopts it to explain the core properties of semiconductors. [...] [He] uses interesting metaphors and analogies to exemplify some of the most difficult notions, in an innovative and engaging way. (Andrea di Falco, University of St. Andrews, UK)

The subject of this book is the physics of semiconductor devices, which is an important topic in engineering and physics because it forms the background for electronic and optoelectronic devices, including solar cells. The author aims to provide students and teachers with a concise text that focuses on semiconductor devices and covers the necessary background in statistical physics.

This text introduces the key prerequisite knowledge in a simple, clear, and friendly manner. It distills the key concepts of semiconductor devices down to their essentials, enabling students to master this key subject in engineering, physics, and materials. The subject matter treated in this book is directly connected to the physics of p-n junctions and solar cells, which has become a topic of intense interest in the last decade. Sample topics covered within the text include:

  • Chemical potential, Fermi level, Fermi-Dirac distribution, drift current and diffusion current.
  • The physics of semiconductors, band theory and intuitive derivations of the concentration of charge carriers.
  • The p-n junction, with qualitative analysis preceding the mathematical descriptions.
  • A derivation of the current vs voltage relation in p-n junctions (Shockley equation).
  • Important applications of p-n junctions, including solar cells
  • The two main types of transistors: Bipolar Junction Transistors (BJT) and Metal Oxide Semiconductor Field Effect Transistors (MOSFET)

For students and instructors, it may be used as a primary textbook for an introductory semiconductor device physics course and is suitable for a course of approximately 30-50 hours. Scientists studying and researching semiconductor devices in general, and solar cells in particular, will also benefit from the clear and intuitive explanations found in this book.



From the Back Cover



An introductory semiconductor device physics textbook that is accessible to readers without a background in statistical physics

The subject of this book is the physics of semiconductor devices, which is an important topic in engineering and physics because it forms the background for electronic and optoelectronic devices, including solar cells. The author aims to provide students and teachers with a concise text that focuses on semiconductor devices and covers the necessary background in statistical physics.

This text introduces the key prerequisite knowledge in a simple, clear, and friendly manner. It distills the key concepts of semiconductor devices down to their essentials, enabling students to master this key subject in engineering, physics, and materials. The subject matter treated in this book is directly connected to the physics of p-n junctions and solar cells, which has become a topic of intense interest in the last decade. Sample topics covered within the text include:

  • Chemical potential, Fermi level, Fermi-Dirac distribution, drift current and diffusion current.
  • The physics of semiconductors, band theory and intuitive derivations of the concentration of charge carriers.
  • The p-n junction, with qualitative analysis preceding the mathematical descriptions.
  • A derivation of the current vs voltage relation in p-n junctions (Shockley equation).
  • Important applications of p-n junctions, including solar cells
  • The two main types of transistors: Bipolar Junction Transistors (BJT) and Metal Oxide Semiconductor Field Effect Transistors (MOSFET)

For students and instructors, it may be used as a primary textbook for an introductory semiconductor device physics course and is suitable for a course of approximately 30-50 hours. Scientists studying and researching semiconductor devices in general, and solar cells in particular, will also benefit from the clear and intuitive explanations found in this book.



About the Author



Emiliano R. Martins obtained his PhD in 2014 from the University of St. Andrews (UK) in the field of photonics, which deals with the interaction between light and matter in semiconductor devices. His research field involves solar cells and other optoelectronic devices and he has been teaching a course on semiconductor device physics since 2016 at the University of São Paulo in Brazil. He has written unpublished books for other undergraduate disciplines that he teaches, including signals and systems and digital signal processing.

Dimensions (Overall): 9.0 Inches (H) x 6.0 Inches (W) x .51 Inches (D)
Weight: .72 Pounds
Suggested Age: 22 Years and Up
Number of Pages: 240
Genre: Science
Sub-Genre: Physics
Publisher: Wiley
Theme: Condensed Matter
Format: Paperback
Author: Emiliano R Martins
Language: English
Street Date: July 5, 2022
TCIN: 91819031
UPC: 9781119884118
Item Number (DPCI): 247-47-7665
Origin: Made in the USA or Imported
If the item details above aren’t accurate or complete, we want to know about it.

Shipping details

Estimated ship dimensions: 0.51 inches length x 6 inches width x 9 inches height
Estimated ship weight: 0.72 pounds
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