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Thin-film coatings are universal on optical components such as
displays, lenses, mirrors, cameras, and windows and serve a variety
of functions such as antireflection, high reflection, and spectral
filtering. Designs can be as simple as a single-layer dielectric
for antireflection effects or very complex with hundreds of layers
for producing elaborate spectral filtering effects. Starting from
basic principles of electromagnetics, design techniques are
progressively introduced toward more intricate optical filter
designs, numerical optimization techniques, and production methods,
as well as emerging areas such as phase change materials and metal
film optics. Worked examples, Python computer codes, and instructor
problem sets are included. Key Features: Starting from the basic
principles of electromagnetics, topics are built in a pedagogic
manner toward intricate filter designs, numerical optimization and
production methods. Discusses thin-film applications and design
from simple single-layer effects to complex several-hundred-layer
spectral filtering. Includes modern topics such as phase change
materials and metal film optics. Includes worked examples, problem
sets, and numerical examples with Python codes.
Thin-film coatings are universal on optical components such as
displays, lenses, mirrors, cameras, and windows and serve a variety
of functions such as antireflection, high reflection, and spectral
filtering. Designs can be as simple as a single-layer dielectric
for antireflection effects or very complex with hundreds of layers
for producing elaborate spectral filtering effects. Starting from
basic principles of electromagnetics, design techniques are
progressively introduced toward more intricate optical filter
designs, numerical optimization techniques, and production methods,
as well as emerging areas such as phase change materials and metal
film optics. Worked examples, Python computer codes, and instructor
problem sets are included. Key Features: Starting from the basic
principles of electromagnetics, topics are built in a pedagogic
manner toward intricate filter designs, numerical optimization and
production methods. Discusses thin-film applications and design
from simple single-layer effects to complex several-hundred-layer
spectral filtering. Includes modern topics such as phase change
materials and metal film optics. Includes worked examples, problem
sets, and numerical examples with Python codes.
This book is designed to introduce typical cleanroom processes,
techniques, and their fundamental principles. It is written for the
practicing scientist or engineer, with a focus on being able to
transition the information from the book to the laboratory. Basic
theory such as electromagnetics and electrochemistry is described
in as much depth as necessary to understand and explain the current
practice and their limitations. Examples from various areas of
interest will be covered, such as the fabrication of photonic
devices including photo detectors, waveguides, and optical
coatings, which are not commonly found in other fabrication texts.
This book is designed to introduce typical cleanroom processes,
techniques, and their fundamental principles. It is written for the
practicing scientist or engineer, with a focus on being able to
transition the information from the book to the laboratory. Basic
theory such as electromagnetics and electrochemistry is described
in as much depth as necessary to understand and explain the current
practice and their limitations. Examples from various areas of
interest will be covered, such as the fabrication of photonic
devices including photo detectors, waveguides, and optical
coatings, which are not commonly found in other fabrication texts.
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