2006Unpublished venueRequires access

Prediction of coulomb blockade in arbitrary environments

J. Hoekstra

Open publisher page 1 citations

Abstract

In contrast to the physical orthodox theory of single-electronics, a circuit theoretical description for single-electron tunneling junctions can be developed. Based on the impulse circuit model for the tunnel junction and a tunnel condition based on the extended hot-electron model, Coulomb blockade and Coulomb oscillations in both high ohmic and low ohmic environment are predicted.

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What this paper is about

In contrast to the physical orthodox theory of single-electronics, a circuit theoretical description for single-electron tunneling junctions can be developed. Based on the impulse circuit model for the tunnel junction and a tunnel condition based on the extended hot-electron model, Coulomb blockade and Coulomb oscillations in both high ohmic and low ohmic environment are predicted.

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Available abstract

In contrast to the physical orthodox theory of single-electronics, a circuit theoretical description for single-electron tunneling junctions can be developed. Based on the impulse circuit model for the tunnel junction and a tunnel condition based on the extended hot-electron model, Coulomb blockade and Coulomb oscillations in both high ohmic and low ohmic environment are predicted.

Key concepts: Coulomb blockade, Ohmic contact, Coulomb, Quantum tunnelling, Tunnel junction, Impulse (physics), Electric potential, Electron

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