Germanium membranes and microstructures of 50–1000 nm thickness have been fabricated by a combination of epitaxial growth on a Si substrate and simple etching processes. The strain in these structures has been measured by high-resolution micro-X-ray diffraction and micro-Raman spectroscopy. The strain in these membranes is extremely isotropic and the surface is observed to be very smooth, with an RMS roughness below 2 nm. The process of membrane fabrication also serves to remove the misfit dislocation network that originally forms at the Si/Ge interface, with benefits for the mechanical, optical and electrical properties of the crystalline membranes
A thin, flat, and single crystal germanium membrane would be an ideal platform on which to mount sen...
A thin, flat, and single crystal germanium membrane would be an ideal platform on which to mount sen...
Under the terms of the Creative Commons Attribution (CC BY) license to their work.-- et al.A thin, f...
Germanium membranes and microstructures of 50–1000 nm thickness have been fabricated by a combinatio...
Germanium membranes and microstructures of 50–1000 nm thickness have been fabricated by a combinatio...
Germanium membranes and microstructures of 50-1000 nm thickness have been fabricated by a combinatio...
Scanning X-ray micro-diffraction has been used as a non-destructive probe of the local crystalline q...
Scanning X-ray micro-diffraction has been used as a non-destructive probe of the local crystalline q...
Scanning X-ray micro-diffraction has been used as a non-destructive probe of the local crystalline q...
Bi-axially strained Germanium (Ge) is an ideal material for Silicon (Si) compatible light sources, o...
Under the terms of the Creative Commons Attribution (CC BY) license to their work.-- et al.Scanning ...
A thin, flat and single crystal membrane on which to mount sensors is generally required for integra...
A thin, flat and single crystal membrane on which to mount sensors is generally required for integra...
A thin, flat and single crystal membrane on which to mount sensors is generally required for integra...
We deposited Ge layers on (001) Si substrates by molecular beam epitaxy and used them to fabricate s...
A thin, flat, and single crystal germanium membrane would be an ideal platform on which to mount sen...
A thin, flat, and single crystal germanium membrane would be an ideal platform on which to mount sen...
Under the terms of the Creative Commons Attribution (CC BY) license to their work.-- et al.A thin, f...
Germanium membranes and microstructures of 50–1000 nm thickness have been fabricated by a combinatio...
Germanium membranes and microstructures of 50–1000 nm thickness have been fabricated by a combinatio...
Germanium membranes and microstructures of 50-1000 nm thickness have been fabricated by a combinatio...
Scanning X-ray micro-diffraction has been used as a non-destructive probe of the local crystalline q...
Scanning X-ray micro-diffraction has been used as a non-destructive probe of the local crystalline q...
Scanning X-ray micro-diffraction has been used as a non-destructive probe of the local crystalline q...
Bi-axially strained Germanium (Ge) is an ideal material for Silicon (Si) compatible light sources, o...
Under the terms of the Creative Commons Attribution (CC BY) license to their work.-- et al.Scanning ...
A thin, flat and single crystal membrane on which to mount sensors is generally required for integra...
A thin, flat and single crystal membrane on which to mount sensors is generally required for integra...
A thin, flat and single crystal membrane on which to mount sensors is generally required for integra...
We deposited Ge layers on (001) Si substrates by molecular beam epitaxy and used them to fabricate s...
A thin, flat, and single crystal germanium membrane would be an ideal platform on which to mount sen...
A thin, flat, and single crystal germanium membrane would be an ideal platform on which to mount sen...
Under the terms of the Creative Commons Attribution (CC BY) license to their work.-- et al.A thin, f...