Electromagnetic Heterostructures: Background and Calculation Methods: Woodhead Publishing Series in Electronic and Optical Materials
Autor Christian Brosseauen Limba Engleză Paperback – 22 ian 2025
- Explains the basic concepts of the dielectric behavior of heterostructures and discusses how they relate to existing computational methods
- Covers the most widely used and efficient computational approaches, including effective medium and percolation theory
- Fills the gap between theoretical knowledge learned in the classroom and practical knowledge gleaned through extensive work in the lab
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Specificații
ISBN-13: 9780443335402
ISBN-10: 0443335400
Pagini: 406
Dimensiuni: 152 x 229 mm
Greutate: 0.65 kg
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Electronic and Optical Materials
ISBN-10: 0443335400
Pagini: 406
Dimensiuni: 152 x 229 mm
Greutate: 0.65 kg
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Electronic and Optical Materials
Cuprins
Part 1. Elementary concepts and definitions
1. Maxwell equations and basic electromagnetic theory
2. Polarization in a static electric field
3. Polarization and permittivity in an alternating electric field
Part 2. Analytical approaches
4. Prelude: A historical examination
5. Some preliminary considerations
6. Mixing laws
7. Effective-medium approximation: its basis and formulation
8. Bounds for the homogenization of dielectric composite materials
9. Percolation: Crossing the great divide of bulk heterogeneous matter
10. Reciprocity relations and extensions
Part 3. Computational approaches
11. Some preliminary considerations: the problem in context
12. Finite differences method
13. Finite-difference time-domain propagation
14. Finite element method
15. Integral equation approaches
16. Monte Carlo method
17. Other selected methods
1. Maxwell equations and basic electromagnetic theory
2. Polarization in a static electric field
3. Polarization and permittivity in an alternating electric field
Part 2. Analytical approaches
4. Prelude: A historical examination
5. Some preliminary considerations
6. Mixing laws
7. Effective-medium approximation: its basis and formulation
8. Bounds for the homogenization of dielectric composite materials
9. Percolation: Crossing the great divide of bulk heterogeneous matter
10. Reciprocity relations and extensions
Part 3. Computational approaches
11. Some preliminary considerations: the problem in context
12. Finite differences method
13. Finite-difference time-domain propagation
14. Finite element method
15. Integral equation approaches
16. Monte Carlo method
17. Other selected methods