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Nonequilibrium Magnons Theory Experiment And Applications Dr Vladimir L Safonovauth

  • SKU: BELL-4309010
Nonequilibrium Magnons Theory Experiment And Applications Dr Vladimir L Safonovauth
$ 31.00 $ 45.00 (-31%)

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Nonequilibrium Magnons Theory Experiment And Applications Dr Vladimir L Safonovauth instant download after payment.

Publisher: Wiley-VCH
File Extension: PDF
File size: 2.15 MB
Pages: 191
Author: Dr. Vladimir L. Safonov(auth.)
ISBN: 9783527411177, 9783527670536, 3527411178, 352767053X
Language: English
Year: 2012

Product desciption

Nonequilibrium Magnons Theory Experiment And Applications Dr Vladimir L Safonovauth by Dr. Vladimir L. Safonov(auth.) 9783527411177, 9783527670536, 3527411178, 352767053X instant download after payment.

This much-needed book addresses the concepts, models, experiments and applications of magnons and spin wave in magnetic devices. It fills the gap in the current literature by providing the theoretical and technological framework needed to develop innovative magnetic devices, such as recording devices and sensors.
Starting with a historical review of developments in the magnon concept, and including original experimental results, the author presents methods of magnon excitation, and several basic models to describe magnon gas. He includes experiments on Bose-Einstein condensation of non-equilibrium magnons, as well as various applications of a magnon approach.
In short, the focus is on

1)  new principles of energy transformation from noise to a coherent oscillations (chapters 5,6, appendix G)

2) new method of computing  - chapter 8.

Suitable for those who do not work directly with magnetic systems, this book can provide several ideas and analogies that can be useful in their work and research.

Content:
Chapter 1 Harmonic Oscillators and the Universal Language of Science (pages 1–11):
Chapter 2 Magnons in Ferromagnets and Antiferromagnets (pages 13–33):
Chapter 3 Relaxation of Magnons (pages 35–57):
Chapter 4 Microwave Pumping of Magnons (pages 59–83):
Chapter 5 Thermodynamic Description of Strongly Excited Magnon System (pages 85–101):
Chapter 6 Bose–Einstein Condensation of Quasi Equilibrium Magnons (pages 103–118):
Chapter 7 Magnons in an Ultrathin Film (pages 119–129):
Chapter 8 Collective Magnetic Dynamics in Nanoparticles (pages 131–141):

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