2001
DOI: 10.1023/a:1012302216297
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Cited by 2 publications
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“…The method [10,13,14] can be effectively applied to evaluation of the empirical parameters of the complex permittivity diagrams in nanosized layers at low temperatures, where the proton tunneling should be taken into account. Unfortunately, no experimental studies of polarization of hydrogen-bonded crystals are available in scientific literature.…”
Section: Complex Permittivity In Nanosized Layersmentioning
confidence: 99%
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“…The method [10,13,14] can be effectively applied to evaluation of the empirical parameters of the complex permittivity diagrams in nanosized layers at low temperatures, where the proton tunneling should be taken into account. Unfortunately, no experimental studies of polarization of hydrogen-bonded crystals are available in scientific literature.…”
Section: Complex Permittivity In Nanosized Layersmentioning
confidence: 99%
“…The calculation by formula (44) using the method adopted in [10,13] reveals anomalies in the kinetics of relaxation processes in nanosized layers manifesting in the shifts of the thermostimulated depolarization-current maxima to low temperatures with decrease in the crystal-layer thickness. Table 3 shows the calculated temperatures of the thermostimulated depolarization-current maxima for chalcanthite crystals.…”
mentioning
confidence: 99%
“…At low temperatures (70-100 ), due to significant transparency of potentional barrier, distance between neighboring energy levels is increased, energy spectrum of relaxed protons becomes quasidiscreet, which leads them to quantum distribution 10,11 .…”
mentioning
confidence: 99%
“…Calculation of theoretical spectra of the thermostimulated currents of depolarization (TCDP) in quadratic approximation 10 , as in works [3,9], is based upon the solving of equation of Focker -Planck, at blocking electrodes. In 10 , exactness of quantum-mechanical approach at tunneling calculation is in the use of density matrix apparatus for the calculation of TCDP density.…”
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confidence: 99%
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