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NASA NTRS · 19950047806

Study of InGaAs-based modulation doped field effect transistor structures using variable-angle spectroscopic ellipsometry

Abstract

Variable-angle spectroscopic ellipsometry was used to estimate the thicknesses of all layers within the optical penetration depth of InGaAs-based modulation doped field effect transistor structures. Strained and unstrained InGaAs channels were made by molecular beam epitaxy (MBE) on InP substrates and by metal-organic chemical vapor deposition on GaAs substrates. In most cases, ellipsometrically determined thicknesses were within 10% of the growth-calibration results. The MBE-made InGaAs strained layers showed large strain effects, indicating a probable shift in the critical points of their dielectric function toward the InP lattice-matched concentration.

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BibTeXRIS

Alterovitz, S. A., Sieg, R. M., Yao, H. D., Snyder, P. G., Woollam, J. A., Pamulapati, J., Bhattacharya, P. K., Sekula-Moise, P. A.. 1991-01-01. Study of InGaAs-based modulation doped field effect transistor structures using variable-angle spectroscopic ellipsometry. https://ntrs.nasa.gov/citations/19950047806

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