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Statistical Physics of Nanoparticles in the Gas Phase: Springer Series on Atomic, Optical, and Plasma Physics

Autor Klavs Hansen
en Limba Engleză Hardback – 6 aug 2025
Each chapter contains exercises spanning from easy to advance and four appendices provide additional useful information. This revised and updated third edition provides the reader with new sections, a new chapter on kinetic energy distributions, a new appendix on probability distributions and a wealth of exercises.
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Specificații

ISBN-13: 9783031901577
ISBN-10: 3031901576
Pagini: 568
Dimensiuni: 160 x 241 x 34 mm
Greutate: 1.11 kg
Ediția:Third Edition 2025
Editura: Springer
Seria Springer Series on Atomic, Optical, and Plasma Physics


Cuprins

Introduction.- The relation between classical and quantum statistics.-  Microcanonical temperature.-  Thermal properties of vibrations.-  Rate constants for emission of atoms and electrons.-  Radiation.-  The evaporative ensemble.-  Abundance distributions; large scale features.-  Molecular dynamics and Monte Carlo simulations.-  Thermal excitation of valence electrons.-  Hot Electron Reactions.-  He droplets.-  Phase Transitions.- A Additional reading.- B Constants of nature and conversion factors.- C Mathematical help.- Index.

Notă biografică

Klavs Hansen is Professor of Physics at Tianjin University. Educated at the Niels Bohr Institute in Copenhagen, he has held positions in the Denmark, USA, Germany, Finland, and Sweden. His expertise is in statistical and quantum processes in free clusters and large molecules, studied at ion traps and storage rings with multiphoton ionization and fragmentation experiments. He is currently also senior visiting professor at KU Leuven.

Textul de pe ultima copertă

Thermal processes are ubiquitous and an understanding of thermal phenomena is essential for a complete description of the physics of nanoparticles, both for the purpose of modeling the dynamics of the particles and for the correct interpretation of experimental data.
The second edition of this book follows the logic of first edition, with an emphasis on presentation of literature results and to guide the reader through derivations. Several topics have been added to the repertoire, notably magnetism, a fuller exposition of aggregation and the related area of nucleation theory. Also a new chapter has been added on the transient hot electron phenomenon. 

The book remains focused on the fundamental properties of nanosystems in the gas phase. Each chapter is enriched with more new exercises and three Appendices provide additional useful material.

Caracteristici

Focused on the fundamental properties of nanosystems in the gas phase Contains some necessary basic notions of statistical physics Includes fundamental results, applications and illustrative examples Detailed derivations of results illustrate the applicability and limitations of approximations and demonstrate the power of the methods Enriched with 74 exercises Includes supplementary material: sn.pub/extras