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Charged particle traps : physics and techniques of charged particle field confinement

Author: F G Major; V N Gheorghe; G Werth
Publisher: Berlin ; New York : Springer, ©2005.
Series: Springer series on atomic, optical, and plasma physics, 37.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Database:WorldCat
Summary:
This book provides an introduction and guide to modern advances in charged particle (and antiparticle) confinement by electromagnetic fields. Confinement in different trap geometries, the influence of trap imperfections, classical and quantum mechanical description of the trapped particle motion, different methods of ion cooling to low temperatures, and non-neutral plasma properties (including Coulomb crystals) are  Read more...
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Genre/Form: Electronic books
Additional Physical Format: Print version:
Major, F.G. (Fouad G.).
Charged particle traps.
Berlin ; New York : Springer, ©2005
(DLC) 2004107650
(OCoLC)57209746
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: F G Major; V N Gheorghe; G Werth
ISBN: 3540220437 9783540220435 3540265767 9783540265764
OCLC Number: 62771233
Description: 1 online resource (xi, 354 pages) : illustrations.
Contents: Trap Operation Theory.- The Paul Trap.- The Penning Trap.- Other Traps.- Trap Techniques.- Loading of Traps.- Trapped Charged Particle Detection.- Nonclassical States of Trapped Ions.- Quantum States of Motion.- Coherent States for Dynamical Groups.- State Engineering and Reconstruction.- Cooling of Trapped Charged Particles.- Trapped Ion Temperature.- Radiative Cooling.- Buffer Gas Cooling.- Resistive Cooling.- Laser Cooling.- Adiabatic Cooling.- Trapped Ions as Nonneutral Plasma.- Plasma Properties.- Plasma Oscillations.- Plasma Crystallization.- Sympathetic Crystallization.
Series Title: Springer series on atomic, optical, and plasma physics, 37.
Responsibility: F.G. Major, V.N. Gheorghe, G. Werth.
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Abstract:

This book provides an introduction and guide to modern advances in charged particle (and antiparticle) confinement by electromagnetic fields. Confinement in different trap geometries, the influence of trap imperfections, classical and quantum mechanical description of the trapped particle motion, different methods of ion cooling to low temperatures, and non-neutral plasma properties (including Coulomb crystals) are the main subjects. They form the basis of such applications of charged particle traps as high-resolution optical and microwave spectroscopy, mass spectrometry, atomic clocks, and, p.

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