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Physics of Zero- and One-Dimensional Nanoscopic Systems (Springer Series in Solid-State Sciences)
 
 
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Physics of Zero- and One-Dimensional Nanoscopic Systems (Springer Series in Solid-State Sciences) [Hardcover]

Sachindra Nath Karmakar (Editor), Santanu Kumar Maiti (Editor), Chowdhury Jayeeta (Editor)

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Book Description

3540726314 978-3540726319 September 4, 2007 1
Submicron and nanoscale systems have risen on the research agenda. Exploiting the technological potential offered by these exotic materials requires a fundamental understanding of basic physical phenomena on the mesoscopic and nanoscopic scales. This book, written by leading experts in the field, covers such topics as the Kondo effect, electron transport, disorder and quantum coherence with electron-electron interaction, persistent current and thermoelectric phenomena, in quantum dots, quantum wires, carbon nanotubes and more.

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From the Back Cover

In recent years submicron and nanoscale systems have featured strongly on the research agenda due to the technological progress and new physics that have emerged from studies of ultra-small systems. A fundamental understanding of basic physical phenomena on the mesoscopic and nanoscopic scales is required to exploit the technological potential offered by these exotic materials. The present book contains review-like chapters by some of the leading experts in the field, covering topics such as the Kondo effect, electron transport, disorder and quantum coherence with electron-electron interaction, persistent current, thermoelectric phenomena, etc. in quantum dots, quantum wires, carbon nanotubes and more. This book will be valuable to researchers and students in condensed matter physics.

About the Author

Obtained Ph.D. in theoretical physics from University of Calcutta, India in 1989. Joined the Theoretical Condensed Matter Physics Division of Saha Institute of Nuclear Physics, India as a faculty member in 1990 and currently a full professor in this institute.

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Inside This Book (learn more)
Key Phrases - Statistically Improbable Phrases (SIPs): (learn more)
mesoscopic rings, strong magnetic field, disordered system, charge qubits, nanographite ribbon junctions, nanographite systems, armchair ribbons, equipotential orbits, mesoscopic normal metal rings, quantum crossing, thermoelectric conductor, channel energy region, fluctuating background charges, nanographite ribbons, paired trajectories, complex quantum dots, zigzag ribbons, bearded ribbon, order hopping integrals, bearded edge, weak localization correction, single benzene molecule, exact diagonalization calculations, disordered rings, weak disorder regime
Key Phrases - Capitalized Phrases (CAPs): (learn more)
Properties of Edge States, Katsunori Wakabayashi, Electron Transport Through Mesoscopic Systems, Kondo Hamiltonian, Efrat Shimshoni, Georges Bouzerar, Gilles Montambaux, Anderson Hamiltonian, New York, Avraham Schiller, The Two Channel Kondo Effect, Cambridge University Press, Phys Rev, World Scientific, Solid State Commun, Magnus Larsson, University of Birmingham, Yuval Oreg, Department of Physics, Oxford University Press, Low Temp
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