Abstract
The influence of the thermomechanical effects on the optical properties of germanium microstructures is investigated. Finite element method (FEM) calculations allow a complete spatial assessment of mechanical deformations induced by a silicon nitride (SiN) stressor layer deposited on Ge micropillars. Simulated strain maps are confirmed by experimental maps obtained by Raman spectroscopy. The theoretical investigation on strain-dependent band structure, including the presence of a strain gradient along the longitudinal direction, is exploited to fully capture photoluminescence spectroscopy experiments. Finally, the joint effect of temperature and strain on the fundamental bandgap is also quantified.
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Manganelli, C. L., Virgilio, M., Montanari, M., Zaitsev, I., Andriolli, N., Faralli, S., … Spirito, D. (2021). Tensile Strained Germanium Microstructures: A Comprehensive Analysis of Thermo-Opto-Mechanical Properties. Physica Status Solidi (A) Applications and Materials Science, 218(21). https://doi.org/10.1002/pssa.202100293
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