arXiv · cond-mat/9707014
e-h Coherence and Charging Effects in Ultrasmall Metallic Grains
Abstract
We consider a model for electron tunneling between a pair of ultrasmall metallic grains. Under appropriate circumstances, non-equilibrium final state effects can strongly enhance tunneling and produce electron-hole coherence between the grains. The model displays a quantum phase transition between a Coulomb blockaded state to a coherent state exhibiting subohmic tunneling conductance. The critical state of the junction exhibits a temperature independent resistance of order $h/e^2$. Finally we discuss the possible relevance to granular materials and quantum dots. In particular, similarities between the quantum transition in our model and the metal-insulator transition in granular wires observed by Herzog et al. are described in detail.
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S. Drewes, S. R. Renn, F. Guinea. 1997-07-01. e-h Coherence and Charging Effects in Ultrasmall Metallic Grains. https://doi.org/10.1103/physrevlett.80.1046
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