We're sorry. An error has occurred
Please cancel or retry.
Light-Material Interactions and Applications in Optoelectronic Devices

Some error occured while loading the Quick View. Please close the Quick View and try reloading the page.
Couldn't load pickup availability
- Format:
-
19 May 2025
This book will connect light-matter interactions and device performance. Useful for those studying or working with optoelectronic devices, optical materials, and nano-plasmonics, this book provides the fundamental knowledge of light-matter interactions in the optical wavelength range, which can establish the required techniques to investigate the working mechanisms of solar cells, light-emitting diodes, and nano-plasmonic devices. The functions of various optical components will be explained, which can provide the required knowledge to design optical measurement systems. Video of optical simulations will accompany this text.
Key Features:
- Provides the fundamental knowledge of light-matter interactions in hot fields such as solar cells, light-emitting diodes, and nano-plasmonic devices.
- Guides the readers on how to design optical spectrometers.
- Explains widely used optical technologies.
- Connects material properties and device performance.

SCIENCE / Physics / Optics & Light, Optical physics, TECHNOLOGY & ENGINEERING / Optics, TECHNOLOGY & ENGINEERING / Electrical, Electronics engineering, Applied optics

Chapter 1: Wave propagations, wave properties and wave manipulations
Chapter 2: Dielectric responses at low frequencies, optical dielectric responses, transfer matrix method
Chapter 3: Laser beam propagations, beam expanders, objective lens, optical couplers, Fresnel lens, plasmonic lens
Chapter 4: Optical spectroscopy (Transmittance /reflectance spectrometer, Photoluminescence spectrometer, Raman scattering spectrometer, Near-field optical spectrometers, Surface-enhanced Raman scattering effects, and the related curve analyses)
Chapter 5: Principles of waveguides, optical sensors, optical detectors, and nanoplasmonic sensors
Chapter 6 : Exciton generations, exciton emissions, exciton diffusions, exciton dissociations, and energy transfer
Chapter 7: Energy diagram of metals and semiconductors, Luminescent materials, Carrier recombination, Carrier injection, and Carrier transport
Chapter 8: Quantum dots and Quantum wells
Chapter 9: Photovoltaic solar cells: Fabrications and design concepts Chapter 10: Light-emitting diodes: Fabrications and design concepts