Rough surface scattering in many-mode conducting channels: gradient versus amplitude scattering

We study transport properties of many‐mode electron waveguides paying the main attention to the interplay between the amplitude and gradient scattering from rough surfaces. Our analysis shows that the two types of scattering are governed by different control parameters. The first (common) parameter...

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Published inPhysica Status Solidi (b) Vol. 242; no. 6; pp. 1224 - 1228
Main Authors Izrailev, F. M., Makarov, N. M., Rendón, M.
Format Journal Article Conference Proceeding
LanguageEnglish
Published Berlin WILEY-VCH Verlag 01.05.2005
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Abstract We study transport properties of many‐mode electron waveguides paying the main attention to the interplay between the amplitude and gradient scattering from rough surfaces. Our analysis shows that the two types of scattering are governed by different control parameters. The first (common) parameter is the ratio of the roughness amplitude to the transverse average width of a waveguide. The second parameter is determined by the squared derivative of a surface profile. We have found that the latter parameter can play the major role in the expression for the inverse mean free path, in contrast to all previous studies where the square‐gradient terms were neglected. Our results may be used in experimental realizations of the surface scattering of electron waves, as well as in other applications (e.g., for optical and microwave waveguides). (© 2005 WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim)
AbstractList We study transport properties of many-mode electron waveguides paying the main attention to the interplay between the amplitude and gradient scattering from rough surfaces. Our analysis shows that the two types of scattering are governed by different control parameters. The first (common) parameter is the ratio of the roughness amplitude to the transverse average width of a waveguide. The second parameter is determined by the squared derivative of a surface profile. We have found that the latter parameter can play the major role in the expression for the inverse mean free path, in contrast to all previous studies where the square-gradient terms were neglected. Our results may be used in experimental realizations of the surface scattering of electron waves, as well as in other applications (e.g., for optical and microwave waveguides). (
Abstract We study transport properties of many‐mode electron waveguides paying the main attention to the interplay between the amplitude and gradient scattering from rough surfaces. Our analysis shows that the two types of scattering are governed by different control parameters. The first (common) parameter is the ratio of the roughness amplitude to the transverse average width of a waveguide. The second parameter is determined by the squared derivative of a surface profile. We have found that the latter parameter can play the major role in the expression for the inverse mean free path, in contrast to all previous studies where the square‐gradient terms were neglected. Our results may be used in experimental realizations of the surface scattering of electron waves, as well as in other applications (e.g., for optical and microwave waveguides). (© 2005 WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim)
We study transport properties of many‐mode electron waveguides paying the main attention to the interplay between the amplitude and gradient scattering from rough surfaces. Our analysis shows that the two types of scattering are governed by different control parameters. The first (common) parameter is the ratio of the roughness amplitude to the transverse average width of a waveguide. The second parameter is determined by the squared derivative of a surface profile. We have found that the latter parameter can play the major role in the expression for the inverse mean free path, in contrast to all previous studies where the square‐gradient terms were neglected. Our results may be used in experimental realizations of the surface scattering of electron waves, as well as in other applications (e.g., for optical and microwave waveguides). (© 2005 WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim)
Author Makarov, N. M.
Izrailev, F. M.
Rendón, M.
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Cites_doi 10.1103/PhysRevE.53.3271
10.1103/PhysRevLett.81.1274
10.1088/0953-8984/10/7/006
10.1063/1.119978
10.1103/PhysRevLett.84.3578
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10.1016/B978-0-08-019896-5.50009-1
10.1103/PhysRevB.67.113402
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Keywords Electron scattering
Mean free path
Microwave radiation
Surface scattering
Roughness
Transport processes
Rough surfaces
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Snippet We study transport properties of many‐mode electron waveguides paying the main attention to the interplay between the amplitude and gradient scattering from...
Abstract We study transport properties of many‐mode electron waveguides paying the main attention to the interplay between the amplitude and gradient...
We study transport properties of many-mode electron waveguides paying the main attention to the interplay between the amplitude and gradient scattering from...
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Title Rough surface scattering in many-mode conducting channels: gradient versus amplitude scattering
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