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Spin S=1/2 Dependent Phenomena of Fermions in Magnetic Nanostructures & Nanoelements
A S Sahakyan
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Description for Spin S=1/2 Dependent Phenomena of Fermions in Magnetic Nanostructures & Nanoelements
Paperback. Num Pages: 115 pages. BIC Classification: TBN; TGM. Category: (P) Professional & Vocational; (UP) Postgraduate, Research & Scholarly. Dimension: 230 x 155. .
The scattering of spin one-half fermions (electrons and neutrons) in multilayer systems containing magnetic nano-elements is a broad avenue for revealing transport properties of materials such as conductance, coherent (ballistic) resistance, and the spin polarization of the electric current. The spin dependent scattering is also a diagnostic tool for the study of magnetic structures of magnetic elements themselves (neutrons). From a theoretical point of view, the solution of one-dimensional scattering problem is reduced to the transfer matrix problem of the spin-polarized (unpolarised) waves on a system consisting of finite potential barriers, characterized by classical magnetization vectors. Their combination together with ... Read more
The scattering of spin one-half fermions (electrons and neutrons) in multilayer systems containing magnetic nano-elements is a broad avenue for revealing transport properties of materials such as conductance, coherent (ballistic) resistance, and the spin polarization of the electric current. The spin dependent scattering is also a diagnostic tool for the study of magnetic structures of magnetic elements themselves (neutrons). From a theoretical point of view, the solution of one-dimensional scattering problem is reduced to the transfer matrix problem of the spin-polarized (unpolarised) waves on a system consisting of finite potential barriers, characterized by classical magnetization vectors. Their combination together with ... Read more
Product Details
Publisher
Nova Science Publishers Inc
Format
Paperback
Publication date
2017
Condition
New
Number of Pages
115
Place of Publication
New York, United States
ISBN
9781536102765
SKU
V9781536102765
Shipping Time
Usually ships in 5 to 9 working days
Ref
99-2
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