ALL-ELECTRON ABINITIO SELF-CONSISTENT-FIELD STUDY OF ELECTRON-TRANSFER IN SCANNING TUNNELING MICROSCOPY AT LARGE AND SMALL TIP-SAMPLE SEPARATIONS - SUPERMOLECULE APPROACH
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作者:
FARAZDEL, A
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IBM CORP,SCI & ENGN COMPUTAT,DEPT 48B MS 428,KINGSTON,NY 12401IBM CORP,SCI & ENGN COMPUTAT,DEPT 48B MS 428,KINGSTON,NY 12401
FARAZDEL, A
[1
]
DUPUIS, M
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IBM CORP,SCI & ENGN COMPUTAT,DEPT 48B MS 428,KINGSTON,NY 12401IBM CORP,SCI & ENGN COMPUTAT,DEPT 48B MS 428,KINGSTON,NY 12401
DUPUIS, M
[1
]
机构:
[1] IBM CORP,SCI & ENGN COMPUTAT,DEPT 48B MS 428,KINGSTON,NY 12401
Electron transfer expressed in the context of molecular-orbital theory is used as a model for scanning tunneling microscopy. We calculate the electronic coupling matrix element T(ab), ubiquitous in theories of electron transfer, by means of ab initio self-consistent-field wave functions for a supermolecule made up of a "sample" molecule and a "tip" metal atom. We find that T(ab) varies with the lateral position of the tip, with the tip-sample distance, and with the applied bias voltage. The features of the T(ab) curves are analyzed in terms of molecular orbitals.