The quantum interference between ‘pure ’ electron–phonon and electron-boundary/impurity scattering drastically changes the electron–phonon relaxation rate. If impurities and boundaries vibrate in the same way as the host lattice, the electron–phonon relaxation rate is significantly decreased. In the presence of the scattering potential that does not vibrate with phonons (e.g. rigid boundaries, interelectron scattering) the relaxation rate is substantially enhanced. Current work reviews recent progress in the theoretical investigations, gives quantitative explanations of available low-temperature data, and presents original experimental results for ultrathin Hf at ultralow temperatures.r 2002 Elsevier Science B.V. All rights reserved
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[[abstract]]We study the electron-phonon scattering rate 1/τep in impure metals in the dirty limit. ...
The Pippard ineffectiveness condition —that electrons strongly scattering from impurities and defect...
In a sandwich consisting of a thin Au film and a thin Bi film insulated by a 500 Å SiO layer the ele...
It is a common practice to try to understand electron interactions in metals by defining a hierarchy...
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The charge-imbalance relaxation rate, 1/F*{sub T{sub Q*}}, has been measured in dirty superconductin...
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The mobility of hydrogen and its isotopes in metals has been the object of investigation for several...
We relate the energy dissipation processes at the femtosecond (electron-spin relaxation time τel-sp)...
He atom scattering has been shown to be a sensitive probe of electron− phonon interaction properties...
We study the effects of piezoelectric coupling between two-dimensional electrons and bulk phonons in...
We report onthe energy relaxation of electrons studied by means of magnetoconductance a...
We study the electron-phonon relaxation in the model of a granular metal film, where the grains are ...
We give a unified and simple treatment of the influence of electron scattering on the nuclear relaxa...
[[abstract]]We study the electron-phonon scattering rate 1/τep in impure metals in the dirty limit. ...
The Pippard ineffectiveness condition —that electrons strongly scattering from impurities and defect...
In a sandwich consisting of a thin Au film and a thin Bi film insulated by a 500 Å SiO layer the ele...
It is a common practice to try to understand electron interactions in metals by defining a hierarchy...
The energy relaxation between the hot degenerate electrons of a homogeneously photoexcited metal fil...
The charge-imbalance relaxation rate, 1/F*{sub T{sub Q*}}, has been measured in dirty superconductin...
In three-dimensional (3D) disordered metals, the electron-phonon (e-ph) scattering is the sole signi...
The logarithmic temperature dependence of resistivity, commonly observed in disordered films, has ge...
The mobility of hydrogen and its isotopes in metals has been the object of investigation for several...
We relate the energy dissipation processes at the femtosecond (electron-spin relaxation time τel-sp)...
He atom scattering has been shown to be a sensitive probe of electron− phonon interaction properties...
We study the effects of piezoelectric coupling between two-dimensional electrons and bulk phonons in...
We report onthe energy relaxation of electrons studied by means of magnetoconductance a...