III-V semiconductor heterostructures are important components of many solid-state optoelectronic devices, but the ability to control and tune the electrical and optical properties of these structures in conventional device geometries is fundamentally limited by the bulk dimensionality and the inability to accommodate lattice-mismatched material combinations. Here we demonstrate how semiconductor nanowires may enable the creation of arbitrarily shaped one-dimensional potential structures for new types of designed device functionality. We describe the controlled growth of stepwise compositionally graded InAs1-xPx heterostructures defined along the axes of InAs nanowires, and we show that nanowires with sawtooth-shaped composition profiles beh...
Semiconductor heterostructures and their implementation into electronic and photonic devices have ha...
Semiconductor nanowires are grown using chemical beam epitaxy and metal organic vapor phase epitaxy ...
Since the introduction of the transistor and the integrated circuit, the semiconductor industry has ...
As an alternative to traditional top-down techniques for fabrication of one-dimensional devices we h...
We present the growth of homogeneous InAs1-xPx nanowires as well as InAs1-xPx heterostructure segmen...
We report on epitaxial growth of InAs nanowires and the steps necessary to create devices for electr...
Solid state electronics and their application in personal computers, smartphones, digital cameras an...
Solid state electronics and their application in personal computers, smartphones, digital cameras an...
We report on epitaxial growth of InAs nanowires and the steps necessary to create devices for electr...
Semiconductors are essential for modern electronic and optoelectronic devices. To further advance th...
This thesis explores the possibility of using advanced device geometries and heterostructure enginee...
Semiconductor nanowires show promise for use in nanoelectronics, fundamental electron transport stud...
Nanowires are widely considered to be key elements in future disruptive electronics and photonics. T...
Nanoscale inorganic materials such as quantum dots (0-dimensional) and one-dimensional (1D) structur...
Advanced synthesis of semiconductor nanowires (NWs) enables their application in diverse fields, not...
Semiconductor heterostructures and their implementation into electronic and photonic devices have ha...
Semiconductor nanowires are grown using chemical beam epitaxy and metal organic vapor phase epitaxy ...
Since the introduction of the transistor and the integrated circuit, the semiconductor industry has ...
As an alternative to traditional top-down techniques for fabrication of one-dimensional devices we h...
We present the growth of homogeneous InAs1-xPx nanowires as well as InAs1-xPx heterostructure segmen...
We report on epitaxial growth of InAs nanowires and the steps necessary to create devices for electr...
Solid state electronics and their application in personal computers, smartphones, digital cameras an...
Solid state electronics and their application in personal computers, smartphones, digital cameras an...
We report on epitaxial growth of InAs nanowires and the steps necessary to create devices for electr...
Semiconductors are essential for modern electronic and optoelectronic devices. To further advance th...
This thesis explores the possibility of using advanced device geometries and heterostructure enginee...
Semiconductor nanowires show promise for use in nanoelectronics, fundamental electron transport stud...
Nanowires are widely considered to be key elements in future disruptive electronics and photonics. T...
Nanoscale inorganic materials such as quantum dots (0-dimensional) and one-dimensional (1D) structur...
Advanced synthesis of semiconductor nanowires (NWs) enables their application in diverse fields, not...
Semiconductor heterostructures and their implementation into electronic and photonic devices have ha...
Semiconductor nanowires are grown using chemical beam epitaxy and metal organic vapor phase epitaxy ...
Since the introduction of the transistor and the integrated circuit, the semiconductor industry has ...