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Integrated Optics: Platforms and Fabrication Methods
by
Butt, Muhammad A.
in
Bandwidths
/ Circuits
/ CMOS
/ Communication
/ Computer centers
/ Etching
/ gallium arsenide
/ Indium
/ indium phosphide
/ Light
/ lithium niobate
/ Manufacturing
/ optical waveguides
/ Optics
/ Photonics
/ polymer
/ Semiconductors
/ Sensors
/ Silicon nitride
/ silicon-on-insulator
/ Temperature
2023
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Integrated Optics: Platforms and Fabrication Methods
by
Butt, Muhammad A.
in
Bandwidths
/ Circuits
/ CMOS
/ Communication
/ Computer centers
/ Etching
/ gallium arsenide
/ Indium
/ indium phosphide
/ Light
/ lithium niobate
/ Manufacturing
/ optical waveguides
/ Optics
/ Photonics
/ polymer
/ Semiconductors
/ Sensors
/ Silicon nitride
/ silicon-on-insulator
/ Temperature
2023
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Do you wish to request the book?
Integrated Optics: Platforms and Fabrication Methods
by
Butt, Muhammad A.
in
Bandwidths
/ Circuits
/ CMOS
/ Communication
/ Computer centers
/ Etching
/ gallium arsenide
/ Indium
/ indium phosphide
/ Light
/ lithium niobate
/ Manufacturing
/ optical waveguides
/ Optics
/ Photonics
/ polymer
/ Semiconductors
/ Sensors
/ Silicon nitride
/ silicon-on-insulator
/ Temperature
2023
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Journal Article
Integrated Optics: Platforms and Fabrication Methods
2023
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Overview
Integrated optics is a field of study and technology that focuses on the design, fabrication, and application of optical devices and systems using integrated circuit technology. It involves the integration of various optical components, such as waveguides, couplers, modulators, detectors, and lasers, into a single substrate. One of the key advantages of integrated optics is its compatibility with electronic integrated circuits. This compatibility enables seamless integration of optical and electronic functionalities onto the same chip, allowing efficient data transfer between optical and electronic domains. This synergy is crucial for applications such as optical interconnects in high-speed communication systems, optical sensing interfaces, and optoelectronic integrated circuits. This entry presents a brief study on some of the widely used and commercially available optical platforms and fabrication methods that can be used to create photonic integrated circuits.
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