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- W4328125146 abstract "InAs/GaSb double quantum wells (QWs) separated by a 100 AA AlSb middle barrier are grown by molecular beam epitaxy. We report a nanofabrication technique that utilizes the surface Fermi level pinning position in InAs $[E_f^s(rm InAs)]$ for realizing independent electric contacts to each well. In particular, separate ohmic contacts to the upper InAs quantum well are achieved by selectively etching down to the InAs, while contacts to the lower GaSb quantum well are obtained by the depletion method. For the latter, the upper InAs quantum well is locally pinched off by top etched trenches capped with a remaining 2-3 nm InAs layer. As a result of a relatively low $E_f^s(rm InAs)$, applying a negative bias gate potential will create a conducting hole channel in GaSb, and hence a separate ohmic contact to the lower quantum well. This method is demonstrated with experiment and the support of a self-consistent band bending calculation. A number of experiments on separately probing Coulomb and tunnel-coupled InAs/GaSb systems now become accessible." @default.
- W4328125146 created "2023-03-22" @default.
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- W4328125146 date "2023-03-20" @default.
- W4328125146 modified "2023-09-27" @default.
- W4328125146 title "Realization of independent contacts in barrier-separated InAs/GaSb quantum wells" @default.
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- W4328125146 doi "https://doi.org/10.1063/5.0133795" @default.
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