Advanced synthesis of semiconductor nanowires (NWs) enables their application in diverse fields, notably in chemical and electrical sensing, photovoltaics, or quantum electronic devices. In particular, indium arsenide (InAs) NWs are an ideal platform for quantum devices, e.g. they may host topological Majorana states. While the synthesis has been continously perfected, only a few techniques have been developed to tailor individual NWs after growth. Here we present three wet chemical etch methods for the post-growth morphological engineering of InAs NWs on the sub-100 nm scale. The first two methods allow the formation of self-aligned electrical contacts to etched NWs, while the third method results in conical shaped NW profiles ideal for cr...
In this thesis, semiconductor nanowires are studied from the point of view of growth and electrical ...
Solid state electronics and their application in personal computers, smartphones, digital cameras an...
Nanotechnology has received a lot of interest lately that will directly or indirectly benefit our da...
Semiconductor nanowires are nanometre-sized structures offering a wealth of unique and novel propert...
We present a method to fabricate nanometer scale gaps within InAs nanowires by selectively etching I...
We report on epitaxial growth of InAs nanowires and the steps necessary to create devices for electr...
We report on epitaxial growth of InAs nanowires and the steps necessary to create devices for electr...
The advent of semiconducting nanowires has initiated research in many areas. The bottom-up growth ca...
Different types of InGaAs/GaAs deep-etched quantum wire (QWI) structure were successfully fabricated...
Solid state electronics and their application in personal computers, smartphones, digital cameras an...
III-V semiconductor heterostructures are important components of many solid-state optoelectronic dev...
InAs nanowires have been extensively studied for high-speed and high-frequency electronics due to th...
Nanoscale inorganic materials such as quantum dots (0-dimensional) and one-dimensional (1D) structur...
Achieving phase purity and control in III-V nanowires is a necessity for future nanowire-based devic...
Semiconductor-superconductor hybrids are commonly used in research on topological quantum computatio...
In this thesis, semiconductor nanowires are studied from the point of view of growth and electrical ...
Solid state electronics and their application in personal computers, smartphones, digital cameras an...
Nanotechnology has received a lot of interest lately that will directly or indirectly benefit our da...
Semiconductor nanowires are nanometre-sized structures offering a wealth of unique and novel propert...
We present a method to fabricate nanometer scale gaps within InAs nanowires by selectively etching I...
We report on epitaxial growth of InAs nanowires and the steps necessary to create devices for electr...
We report on epitaxial growth of InAs nanowires and the steps necessary to create devices for electr...
The advent of semiconducting nanowires has initiated research in many areas. The bottom-up growth ca...
Different types of InGaAs/GaAs deep-etched quantum wire (QWI) structure were successfully fabricated...
Solid state electronics and their application in personal computers, smartphones, digital cameras an...
III-V semiconductor heterostructures are important components of many solid-state optoelectronic dev...
InAs nanowires have been extensively studied for high-speed and high-frequency electronics due to th...
Nanoscale inorganic materials such as quantum dots (0-dimensional) and one-dimensional (1D) structur...
Achieving phase purity and control in III-V nanowires is a necessity for future nanowire-based devic...
Semiconductor-superconductor hybrids are commonly used in research on topological quantum computatio...
In this thesis, semiconductor nanowires are studied from the point of view of growth and electrical ...
Solid state electronics and their application in personal computers, smartphones, digital cameras an...
Nanotechnology has received a lot of interest lately that will directly or indirectly benefit our da...