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  4. Origin of giant enhancement of phase contrast in electron holography of modulation-doped n-type GaN
 
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research article

Origin of giant enhancement of phase contrast in electron holography of modulation-doped n-type GaN

Ji, K.
•
Schnedler, M.
•
Lan, Q.
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October 1, 2024
Ultramicroscopy

The electron optical phase contrast probed by electron holography at n-n+ GaN doping steps is found to exhibit a giant enhancement, in sharp contrast to the always smaller than expected phase contrast reported for p-n junctions. We unravel the physical origin of the giant enhancement by combining off-axis electron holography data with self-consistent electrostatic potential calculations. The predominant contribution to the phase contrast is shown to arise from the doping dependent screening length of the surface Fermi-level pinning, which is induced by FIB-implanted carbon point defects below the outer amorphous shell. The contribution of the built-in potential is negligible for modulation doping and only relevant for large built-in potentials at e.g. p-n junctions. This work provides a quantitative approach to so-called dead layers at TEM lamellas.

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10.1016_j.ultramic.2024.114006.pdf

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Main Document

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openaccess

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CC BY-NC

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983.94 KB

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Adobe PDF

Checksum (MD5)

023e58ee28c320b4186b1725413b1574

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