Igor Tsukerman Tsukerman Computational Methods for Nanoscale Applications

Computational Methods for Nanoscale Applications

von Igor Tsukerman

Particles, Plasmons and Waves

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Beschreibung

This well-received third edition offers fresh perspectives on modern nanoscale problems, where fundamental science, technology, and computer modeling intersect. In addition to traditional computational techniques such as finite-difference schemes, finite element analysis, and Ewald summation, the book introduces the finite-difference calculus of Flexible Local Approximation MEthods (FLAME), which significantly improves numerical accuracy across a wide range of problems.

Applications covered include long-range particle interactions in homogeneous and heterogeneous media, electrostatics of colloidal systems, wave propagation in photonic crystals, photonic band structure, plasmonic field enhancement, metamaterials, backward waves and negative refraction, cloaking, focusing beyond the diffraction limit, and transformation optics. This edition includes a brand-new chapter on topological photonics, along with updated sections on chiral metamaterials and homogenization theories. It has also been extensively revised and expanded to reflect recent developments. Much of the artwork has been significantly upgraded.


This well-received third edition offers fresh perspectives on modern nanoscale problems, where fundamental science, technology, and computer modeling intersect. In addition to traditional computational techniques such as finite-difference schemes, finite element analysis, and Ewald summation, the book introduces the finite-difference calculus of Flexible Local Approximation MEthods (FLAME), which significantly improves numerical accuracy across a wide range of problems.

Applications covered include long-range particle interactions in homogeneous and heterogeneous media, electrostatics of colloidal systems, wave propagation in photonic crystals, photonic band structure, plasmonic field enhancement, metamaterials, backward waves and negative refraction, cloaking, focusing beyond the diffraction limit, and transformation optics. This edition includes a brand-new chapter on topological photonics, along with updated sections on chiral metamaterials and homogenization theories. It has also been extensively revised and expanded to reflect recent developments. Much of the artwork has been significantly upgraded.


Bridges computational methods, both traditional and new, with nano- and molecular-scale applications Accessible to researchers, graduate students, and even senior-level undergraduate students Covers "hot topics" in photonics, plasmonics, metamaterials, and topological photonics

Autor*in

Igor Tsukerman

Themen in »Computational Methods for Nanoscale Applications«

computer modeling nanoscale finite-difference schemes flexible local approximation methods nano-photonics computational applications long-range particle interactions finite-difference time-domain method absorbing boundary conditions discontinuous Galerkin methods Ewald summation topological photonics

Stimmen zu »Computational Methods for Nanoscale Applications«

Details

ISBN: 9783032284501
Verlag: Springer International Publishing
Erscheinung: 07.08.2026

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