A simultaneous global fit of carrier-dependent bandgap and plasma energy in Al-doped ZnO, using nonparabolic band models, separates Burstein-Moss shift from bandgap renormalization and yields consistent effective masses via the Nilsson model.
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Effective masses, Burstein-Moss shift, and bandgap renormalization in degenerate Al-doped ZnO from broadband ellipsometry and Hall measurements
A simultaneous global fit of carrier-dependent bandgap and plasma energy in Al-doped ZnO, using nonparabolic band models, separates Burstein-Moss shift from bandgap renormalization and yields consistent effective masses via the Nilsson model.