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Principles of Photonic Integrated Circuits: Materials, Device Physics, Guided Wave Design

ISBN-13: 9783030651954 / Angielski / Miękka / 2022

Richard Osgood jr.;Xiang Meng
Principles of Photonic Integrated Circuits: Materials, Device Physics, Guided Wave Design Osgood Jr, Richard 9783030651954 Springer International Publishing - książkaWidoczna okładka, to zdjęcie poglądowe, a rzeczywista szata graficzna może różnić się od prezentowanej.

Principles of Photonic Integrated Circuits: Materials, Device Physics, Guided Wave Design

ISBN-13: 9783030651954 / Angielski / Miękka / 2022

Richard Osgood jr.;Xiang Meng
cena 262,25 zł
(netto: 249,76 VAT:  5%)

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This graduate-level textbook presents the principles, design methods, simulation, and materials of photonic circuits. It provides state-of-the-art examples of silicon, indium phosphide, and other materials frequently used in these circuits, and includes a thorough discussion of all major types of devices. In addition, the book discusses the integrated photonic circuits (chips) that are currently increasingly employed on the international technology market in connection with short-range and long-range data communication. Featuring references from the latest research in the field, as well as chapter-end summaries and problem sets, Principles of Photonic Integrated Circuits is ideal for any graduate-level course on integrated photonics, or optical technology and communication.

Kategorie:
Nauka, Fizyka
Kategorie BISAC:
Science > Optyka
Technology & Engineering > Microwaves
Technology & Engineering > Materials Science - Thin Films, Surfaces & Interfaces
Wydawca:
Springer International Publishing
Seria wydawnicza:
Graduate Texts in Physics
Język:
Angielski
ISBN-13:
9783030651954
Rok wydania:
2022
Waga:
0.59 kg
Wymiary:
23.5 x 15.5
Oprawa:
Miękka
Dodatkowe informacje:
Wydanie ilustrowane

Chapter1: Integrated Optics: An Overview

Chapter2: Materials for PICs

Chapter3: Dielectric Waveguides

Chapter4: Three-Dimensional Waveguides

Chapter5: Coupled-Mode Theory

Chapter6: Optical Couplers

Chapter7: Passive Waveguide Components

Chapter8: Polarization Routers

Chapter9: Imaging Devices

Chapter10: Diffraction Gratings

Chapter11: Wavelength Filtering and Manipulation

Chapter12: The Electro-Optic Effect in Waveguides and Optical Modulators

Chapter13: Integrated Optical Switches 

Chapter 14: Integrated Optical Isolators and Magnetooptics

Richard M. Osgood, Jr. is Higgins Prof. (Emeritus) at Columbia University. He has taught courses on photonics and advanced integrated optical devices and circuits at Columbia for the last 34 years. In addition to this, his group has pioneered work in integrated device simulation, new integrated optical materials fabrication methods, silicon passives and nonlinear optical devices and surface physics. He has served as Associate Lab Director at Brookhaven National Laboratory, where he founded its Nanocenter and Materials Sciences Departments. He is Fellow of the IEEE, APS, and OSA, a member of the NAI, and a Guggenheim Fellow. He received the OSA R.W. Wood Award, the Japanese Optical Device Association Honorary Lectureship, and the IEEE Photonics Quantum Electronics Award. Research in his group has led to the founding of 4 start-up companies. He holds 23 patents and has published 500 ISI-indexed journal articles on laser science, materials science, and optical devices and physics.


Xiang Meng is an adjunct faculty in the Department of Electrical Engineering at Columbia University. His research interests concern scientific computing and numerical analysis mainly for emerging photonic devices and systems, ranging from nanolasers and nanosensors, to high-capacity energy-efficient optical interconnects. He has developed courses on photonic devices, photonic systems and applied quantum photonics at Columbia University, with focus on simulation techniques and fabrication considerations for state-of-the-art systems in high-performance computing, communication, and data center platforms.

This graduate-level textbook presents the principles, design methods, simulation, and materials of photonic circuits. It provides state-of-the-art examples of silicon, indium phosphide, and other materials frequently used in these circuits, and includes a thorough discussion of all major types of devices. In addition, the book discusses the integrated photonic circuits (chips) that are currently increasingly employed on the international technology market in connection with short-range and long-range data communication. Featuring references from the latest research in the field, as well as chapter-end summaries and problem sets, Principles of Photonic Integrated Circuits is ideal for any graduate-level course on integrated photonics, or optical technology and communication.



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