研究目的
To increase the maximum operating temperature of terahertz quantum cascade lasers through Bayesian optimization algorithms combined with a nonequilibrium Green’s function transport model.
研究成果
The two-well scheme is superior for reaching high operating temperatures, while the three-well scheme is more robust to variations in layer thicknesses. The study provides insights into the sensitivity to flux-rate fluctuations during growth and simulation-model inaccuracies.
研究不足
The period thickness needs to be controlled to within a few percent, which is challenging but achievable with present-day molecular-beam epitaxy.
1:Experimental Design and Method Selection:
Bayesian optimization algorithms are used in combination with a nonequilibrium Green’s function transport model.
2:Sample Selection and Data Sources:
Designs based on two and three wells per period are considered.
3:List of Experimental Equipment and Materials:
Terahertz quantum cascade lasers, molecular-beam epitaxy for growth.
4:Experimental Procedures and Operational Workflow:
Optimization of layer thicknesses and evaluation of electron-electron correlations.
5:Data Analysis Methods:
Systematic evaluation of the studied schemes in terms of optimal extraction energy and relevance of electron-electron correlations.
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