Quantum Nano-Plasmonics [Kõva köide]

(Politechnika Wroclawska, Poland)
  • Formaat: Hardback, 320 pages, Worked examples or Exercises
  • Ilmumisaeg: 03-Sep-2020
  • Kirjastus: Cambridge University Press
  • ISBN-10: 1108478395
  • ISBN-13: 9781108478397
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  • Hind: 144,80 €
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  • Formaat: Hardback, 320 pages, Worked examples or Exercises
  • Ilmumisaeg: 03-Sep-2020
  • Kirjastus: Cambridge University Press
  • ISBN-10: 1108478395
  • ISBN-13: 9781108478397
"With examples and clear explanation throughout, this step-by-step approach makes the quantum theory of plasmons accessible to readers without a specialized training in theory. A fully analytical formulation offers an opportunity for further development of the research and applications. The theory is focused on the random phase approximation description of plasmons in metallic nanostructures, previously defined for the bulk metal only. Particular attention is paid to the large damping of plasmons in nanostructures, including electron scattering and Lorentz friction losses; a quantum description of the plasmon photovoltaic effect is presented and there is an in-depth analysis of plasmon-polariton kinetics in metallic nano-chains. Suitable for students in the fields of plasmonics, optoelectronics, and photonics and for researchers active in the fields of photovoltaics, optoelectronics, nanoplasmonics, and nano-photonics, the book should also be useful for researchers in soft plasmonics since it includes applications to electro-signalling in neurons"--

Muu info

With examples throughout, this step-by-step approach makes quantum theory of plasmons accessible to readers without specialized training in theory.
1. Introduction and description of contents;
2. Physics of metals{preliminaries;
3. Quasiclassical description of plasmons in bulk metal;
4. Plasmon excitations in nanometer-size metallic particles;
5. Damping of plasmons in metallic nanoparticles;
6. Plasmon photovoltaic effect;
7. Plasmon-induced enhancement of efficiency of solar cells modified by metallic nanoparticles: material dependence;
8. Numerical simulation of plasmon photo-effect;
9. Plasmon-polaritons in metallic nanoparticle chains;
10. Plasmon-polariton kinetics in metallic nano-chain located in absorbing surroundings;
11. Plasmons in finite spherical ionic systems;
12. Plasmon-polaritons in a chain of finite ionic systems-model of saltatory conduction in myelinated axons; Bibliography; Index.
Witold A. Jacak is Associate Professor at Politechnika Wroclawska, Poland. He is a theoretical physicist active in the fields of nano-plasmonics, quantum mechanics, decoherence in quantum dots, quantum information and quantum communication.

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