Scanning X-ray micro-diffraction has been used as a non-destructive probe of the local crystalline quality of a thin suspended germanium (Ge) membrane. A series of reciprocal space maps were obtained with ∼4 μm spatial resolution, from which detailed information on the strain distribution, thickness, and crystalline tilt of the membrane was obtained. We are able to detect a systematic strain variation across the membranes, but show that this is negligible in the context of using the membranes as platforms for further growth. In addition, we show evidence that the interface and surface quality is improved by suspending the Ge
A thin, flat, and single crystal germanium membrane would be an ideal platform on which to mount sen...
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...
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...
Under the terms of the Creative Commons Attribution (CC BY) license to their work.-- et al.Scanning ...
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...
Germanium membranes and microstructures of 50-1000 nm thickness have been fabricated by a combinatio...
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...
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.A thin, f...
A thin, flat, and single crystal germanium membrane would be an ideal platform on which to mount sen...
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...
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...
Under the terms of the Creative Commons Attribution (CC BY) license to their work.-- et al.Scanning ...
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...
Germanium membranes and microstructures of 50-1000 nm thickness have been fabricated by a combinatio...
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...
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.A thin, f...
A thin, flat, and single crystal germanium membrane would be an ideal platform on which to mount sen...
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...