Surface and waveguide Josephson plasma waves in slabs of layered superconductors Metadata
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Title
- Main Title Surface and waveguide Josephson plasma waves in slabs of layered superconductors
Creator
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Author: Slipchenko, T. M.Creator Type: PersonalCreator Info: National Academy of Sciences of Ukraine
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Author: Kadygrob, D. V.Creator Type: PersonalCreator Info: Chalmers University of Technology
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Author: Bogdanis, D.Creator Type: PersonalCreator Info: V. N. Karazin Kharkov National University
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Author: Yampol'skii, V. A.Creator Type: PersonalCreator Info: National Academy of Sciences of Ukraine; V. N. Karazin Kharkov National University; The Abdus Salam International Centre for Theoretical Physics
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Author: Krokhin, Arkadii A.Creator Type: PersonalCreator Info: University of North Texas
Publisher
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Name: American Physical SocietyPlace of Publication: [College Park, Maryland]
Date
- Creation: 2011-12-20
Language
- English
Description
- Content Description: Article discussing surface and waveguide Josephson plasma waves in slabs of layered superconductors.
- Physical Description: 8 p.
Subject
- Keyword: superconductors
- Keyword: plasma waves
- Keyword: electromagnetic
Source
- Journal: Physical Review B, 2011, College Park: American Physical Society
Citation
- Publication Title: Physical Review B
- Volume: 84
- Issue: 22
- Peer Reviewed: True
Collection
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Name: UNT Scholarly WorksCode: UNTSW
Institution
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Name: UNT College of Arts and SciencesCode: UNTCAS
Rights
- Rights Access: public
Resource Type
- Article
Format
- Text
Identifier
- DOI: 10.1103/PhysRevB.84.224512
- Archival Resource Key: ark:/67531/metadc103278
Degree
- Academic Department: Physics
Note
- Display Note: Copyright 2010 American Physical Society. The following article appeared in Physical Review B, 84:22, http://link.aps.org/doi/10.1103/PhysRevB.84.224512
- Display Note: Abstract: We discuss the propagation of symmetric and antisymmetric Josephson plasma waves in a slab of layered superconductor clad between two identical dielectrics. We predict two branches of surface waves in the terahertz frequency range, one above and another below the Josephson plasma frequency. Apart from this, there exists a discrete set of waveguide modes with electromagnetic fields oscillating across the slab thickness and decaying exponentially away from the slab. We consider the excitation of the predicted waves by means of the attenuated-total-reflection method. It is shown that for a specific set of the parameters of the structure, the excitation of the waveguide modes is accompanied by the total suppression of specular reflection.