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Diffusion under the Effect of Lorentz Force (BestMasters)

Diffusion under the Effect of Lorentz Force (BestMasters)

Diffusion under the Effect of Lorentz Force (BestMasters)
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Diffusion under the Effect of Lorentz Force (BestMasters) Paperback - 2022

by Kalz, Erik

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Description

Springer Spektrum, 2022. Paperback. New. 67 pages. 8.27x5.83x0.24 inches.
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Ships from Revaluation Books (Devon, United Kingdom)

Details

  • Title Diffusion under the Effect of Lorentz Force (BestMasters)
  • Author Kalz, Erik
  • Binding Paperback
  • Condition New
  • Pages 58
  • Volumes 1
  • Language ENG
  • Publisher Springer Spektrum
  • Publication date 2022
  • Illustrated Yes
  • Features Illustrated
  • Bookseller's Inventory # x-3658395176
  • ISBN 9783658395179 / 3658395176
  • Weight 0.23 lbs (0.10 kg)
  • Dimensions 8.27 x 5.83 x 0.17 in (21.01 x 14.81 x 0.43 cm)
  • Category Science
  • Quantity available 2

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Reader reviews for Diffusion under the Effect of Lorentz Force (BestMasters)

From the publisher

It is generally believed that collisions of particles reduce the self-diffusion coefficient. In this book, Erik Kalz shows that in classical systems under the effect of Lorentz force, which are characterized by diffusion tensors with antisymmetric elements, collisions surprisingly can enhance self-diffusion. In these systems, due to an inherent curving effect, the motion of particles is facilitated, instead of hindered by collisions. Consistent with this the author finds that the collective diffusion remains unaffected. Using a geometric model, he theoretically predicts a magnetic field governed crossover from a reduced to an enhanced self-diffusion. The physical interpretation is quantitatively supported by the force autocorrelation function, which turns negative with increasing the magnetic field. Using Brownian-dynamics simulations, he validates the predictions.

From the rear cover

It is generally believed that collisions of particles reduce the self-diffusion coefficient. In this book, Erik Kalz shows that in classical systems under the effect of Lorentz force, which are characterized by diffusion tensors with antisymmetric elements, collisions surprisingly can enhance self-diffusion. In these systems, due to an inherent curving effect, the motion of particles is facilitated, instead of hindered by collisions. Consistent with this the author finds that the collective diffusion remains unaffected. Using a geometric model, he theoretically predicts a magnetic field governed crossover from a reduced to an enhanced self-diffusion. The physical interpretation is quantitatively supported by the force autocorrelation function, which turns negative with increasing the magnetic field. Using Brownian-dynamics simulations, he validates the predictions.
About the AuthorErik Kalz holds a master's degree in physics from the Technical University of Dresden. He is interested in statistical physics with applications in soft condensed matter physics and biological physics. In 2022 he will start his PhD in theoretical physics at the University of Potsdam.

About the author

Erik Kalz holds a master's degree in physics from the Technical University of Dresden. He is interested in statistical physics with applications in soft condensed matter physics and biological physics. In 2022 he will start his PhD in theoretical physics at the University of Potsdam.
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