Computational Nanotechnology Using Finite Difference Time Domain

Nonfiction, Science & Nature, Technology, Microwaves, Electricity, Science, Physics, General Physics
Cover of the book Computational Nanotechnology Using Finite Difference Time Domain by , CRC Press
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart
Author: ISBN: 9781351831734
Publisher: CRC Press Publication: December 19, 2017
Imprint: CRC Press Language: English
Author:
ISBN: 9781351831734
Publisher: CRC Press
Publication: December 19, 2017
Imprint: CRC Press
Language: English

The Finite Difference Time Domain (FDTD) method is an essential tool in modeling inhomogeneous, anisotropic, and dispersive media with random, multilayered, and periodic fundamental (or device) nanostructures due to its features of extreme flexibility and easy implementation. It has led to many new discoveries concerning guided modes in nanoplasmonic waveguides and continues to attract attention from researchers across the globe.

Written in a manner that is easily digestible to beginners and useful to seasoned professionals, Computational Nanotechnology Using Finite Difference Time Domain describes the key concepts of the computational FDTD method used in nanotechnology. The book discusses the newest and most popular computational nanotechnologies using the FDTD method, considering their primary benefits. It also predicts future applications of nanotechnology in technical industry by examining the results of interdisciplinary research conducted by world-renowned experts.

Complete with case studies, examples, supportive appendices, and FDTD codes accessible via a companion website, Computational Nanotechnology Using Finite Difference Time Domain not only delivers a practical introduction to the use of FDTD in nanotechnology but also serves as a valuable reference for academia and professionals working in the fields of physics, chemistry, biology, medicine, material science, quantum science, electrical and electronic engineering, electromagnetics, photonics, optical science, computer science, mechanical engineering, chemical engineering, and aerospace engineering.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

The Finite Difference Time Domain (FDTD) method is an essential tool in modeling inhomogeneous, anisotropic, and dispersive media with random, multilayered, and periodic fundamental (or device) nanostructures due to its features of extreme flexibility and easy implementation. It has led to many new discoveries concerning guided modes in nanoplasmonic waveguides and continues to attract attention from researchers across the globe.

Written in a manner that is easily digestible to beginners and useful to seasoned professionals, Computational Nanotechnology Using Finite Difference Time Domain describes the key concepts of the computational FDTD method used in nanotechnology. The book discusses the newest and most popular computational nanotechnologies using the FDTD method, considering their primary benefits. It also predicts future applications of nanotechnology in technical industry by examining the results of interdisciplinary research conducted by world-renowned experts.

Complete with case studies, examples, supportive appendices, and FDTD codes accessible via a companion website, Computational Nanotechnology Using Finite Difference Time Domain not only delivers a practical introduction to the use of FDTD in nanotechnology but also serves as a valuable reference for academia and professionals working in the fields of physics, chemistry, biology, medicine, material science, quantum science, electrical and electronic engineering, electromagnetics, photonics, optical science, computer science, mechanical engineering, chemical engineering, and aerospace engineering.

More books from CRC Press

Cover of the book Theory of Vibration with Applications by
Cover of the book Blender for Animation and Film-Based Production by
Cover of the book Construction Statistics Annual, 2000 by
Cover of the book Dichroic Dyes for Liquid Crystal Displays by
Cover of the book Background and Recent Developments of Metric Fixed Point Theory by
Cover of the book Twistor Theory by
Cover of the book Fibronectin in Health and Disease by
Cover of the book The Primary FRCA Structured Oral Exam Guide 1 by
Cover of the book Air Entrainment in Free-surface Flow by
Cover of the book Residential Leaseholders Handbook by
Cover of the book Nanotoxicology by
Cover of the book Monte Carlo Methods for Electromagnetics by
Cover of the book Engineering with Rigid PVC by
Cover of the book Digital Systems and Applications by
Cover of the book Particle Characterization in Technology by
We use our own "cookies" and third party cookies to improve services and to see statistical information. By using this website, you agree to our Privacy Policy