An effective-mass theory of subsurface scanning tunneling microscopy (STM) is developed. Subsurface structures such as quantum dots embedded into a semiconductor slab are considered. States localized around subsurface structures match on to a tail that decays into the vacuum above the surface. It is shown that the lateral variation in this tail may be found from a surface envelope function provided that the effects of the slab surfaces and the subsurface structure decouple approximately. The surface envelope function is given by a weighted integral of a bulk envelope function that satisfies boundary conditions appropriate to the slab. The weight function decays into the slab inversely with distance and this slow decay explains the subsurfac...
A Scanning Tunneling Microscope (STM) is a very useful tool in Physics and Material Science with its...
Abstract. We demonstrate a possibility of using a scanning tunneling microscope (STM) for high spati...
Single-molecule adsorption scanning tunneling microscopy (SMA-STM) is a powerful spectroscopy method...
An effective-mass theory of subsurface scanning tunneling microscopy (STM) is developed. Subsurface ...
An effective-mass theory of subsurface scanning tunneling microscopy (STM) is developed. Subsurface ...
We apply our generalised effective mass theory of sub-surface scanning tunnelling microscopy (STM) (...
Computational models are used to investigate the role of electron-electron interactions in cross-sec...
The present theoretical understanding of imaging clean and adsorbate covered metal surfaces in scann...
Recently, STM measurements of cleaved, self assembled quantum dots (SAQDs) have provided important i...
The main body of this thesis describes how to calculate scanning tunneling microscopy (STM) images f...
Recently, STM measurements of cleaved, self assembled quantum dots (SAQDs) have provided important i...
When a semi-conductor structure containing strained layers such as quantum wells (QWs) or quantum do...
A Scanning Tunneling Microscope (STM) is a very useful tool in Physics and Material Science with its...
Abstract. We demonstrate a possibility of using a scanning tunneling microscope (STM) for high spati...
Single-molecule adsorption scanning tunneling microscopy (SMA-STM) is a powerful spectroscopy method...
An effective-mass theory of subsurface scanning tunneling microscopy (STM) is developed. Subsurface ...
An effective-mass theory of subsurface scanning tunneling microscopy (STM) is developed. Subsurface ...
We apply our generalised effective mass theory of sub-surface scanning tunnelling microscopy (STM) (...
Computational models are used to investigate the role of electron-electron interactions in cross-sec...
The present theoretical understanding of imaging clean and adsorbate covered metal surfaces in scann...
Recently, STM measurements of cleaved, self assembled quantum dots (SAQDs) have provided important i...
The main body of this thesis describes how to calculate scanning tunneling microscopy (STM) images f...
Recently, STM measurements of cleaved, self assembled quantum dots (SAQDs) have provided important i...
When a semi-conductor structure containing strained layers such as quantum wells (QWs) or quantum do...
A Scanning Tunneling Microscope (STM) is a very useful tool in Physics and Material Science with its...
Abstract. We demonstrate a possibility of using a scanning tunneling microscope (STM) for high spati...
Single-molecule adsorption scanning tunneling microscopy (SMA-STM) is a powerful spectroscopy method...