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- W2059343391 abstract "The transition rates of individual two-state systems in a mesoscopic disordered metal (Bi) are studied via time-dependent conductance fluctuations. A striking increase in the transition rates is observed as the temperature T is decreased below 1 K for defects with energy splitting ensuremath{varepsilon}${mathit{k}}_{mathit{B}}$T. In contrast, the transition rates decrease monotonically as T is lowered if ensuremath{varepsilon}g${mathit{k}}_{mathit{B}}$T. We show that these phenomena are a manifestation of dissipative quantum tunneling and estimate, for one particular defect, the defect--conduction-electron coupling parameter, ensuremath{alpha}ensuremath{approxeq}0.24." @default.
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- W2059343391 date "1992-02-17" @default.
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- W2059343391 title "Dissipative quantum tunneling of a single microscopic defect in a mesoscopic metal" @default.
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- W2059343391 doi "https://doi.org/10.1103/physrevlett.68.998" @default.
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