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Spectroscopy of Semiconductors: Numerical Analysis Bridging Quantum Mechanics and Experiments (Softcover Reprint of the Original 1st 2018)

Spectroscopy of Semiconductors

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"Spectroscopy of Semiconductors" by Wei Lu, Ying Fu is a book focused on Devices & Sensors. Best for readers interested in this subject.

The science and technology related to semiconductors have received significant attention for applications in various fields including microelectronics, nanophotonics, and biotechnologies. Understanding of semiconductors has advanced to such a level that we are now able to design novel system complexes before we go for the proof-of-principle experimental demonstration. This book explains the experimental setups for optical spectral analysis of semiconductors and describes the experimental methods and the basic quantum mechanical principles underlying the fast-developing nanotechnology for semiconductors. Further, it uses numerous case studies with detailed theoretical discussions and calculations to demonstrate the data analysis. Covering structures ranging from bulk to the nanoscale, it examines applications in the semiconductor industry and biomedicine. Starting from the most basic physics of geometric optics, wave optics, quantum mechanics, solid-state physics, it provides a self-contained resource on the subject for university undergraduates. The book can be further used as a toolbox for researching and developing semiconductor nanotechnology based on spectroscopy.

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Best For: Researchers and professionals in semiconductor technology and spectroscopy.
Focus: Numerical analysis methods connecting quantum mechanics theories with experimental spectroscopy data.
Covers: Experimental setups for optical spectral analysis of semiconductors and related numerical techniques.
Why It Matters: Provides a detailed approach to designing and analyzing semiconductor systems by integrating theoretical and experimental perspectives, aiding in the development of novel semiconductor applications.

"Spectroscopy of Semiconductors" by Wei Lu, Ying Fu is a book focused on Devices & Sensors. Best for readers interested in this subject.

Topic: Devices & Sensors

Author: Wei Lu, Ying Fu

Who this is for:

  • Students
  • Educators
  • Interested readers

Why this book matters: It offers useful subject matter and structured coverage for readers looking to explore the topic in more depth.

The science and technology related to semiconductors have received significant attention for applications in various fields including microelectronics, nanophotonics, and biotechnologies. Understanding of semiconductors has advanced to such a level that we are now able to design novel system complexes before we go for the proof-of-principle experimental demonstration. This book explains the experimental setups for optical spectral analysis of semiconductors and describes the experimental methods and the basic quantum mechanical principles underlying the fast-developing nanotechnology for semiconductors. Further, it uses numerous case studies with detailed theoretical discussions and calculations to demonstrate the data analysis. Covering structures ranging from bulk to the nanoscale, it examines applications in the semiconductor industry and biomedicine. Starting from the most basic physics of geometric optics, wave optics, quantum mechanics, solid-state physics, it provides a self-contained resource on the subject for university undergraduates. The book can be further used as a toolbox for researching and developing semiconductor nanotechnology based on spectroscopy.

AuthorWei Lu, Ying Fu
PublisherSpringer
Published2019-08-23
ISBN-139783030069438
BindingPaperback
Pages252
LanguageEnglish
SubjectsTechnology & Engineering | Electronics | Semiconductors ; Science | Spectroscopy & Spectrum Analysis ; Technology & Engineering | Lasers & Photonics ; Technology & Engineering | Materials Science | Electronic Materials ; Technology & Engineering | Microwa
TopicDevices & Sensors
SeriesSpringer Optical Sciences

Format: Paperback

Length: 252 pages

Language: English

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