Aghoutane, N.; Pérez, L.M.; Tiutiunnyk, A.; Laroze, D.; Baskoutas, S.; Dujardin, F.; Fatimy, A.E.; El-Yadri, M.; Feddi, E.M.
Adjustment of Terahertz Properties Assigned to the First Lowest Transition of (D+, X) Excitonic Complex in a Single Spherical Quantum Dot Using Temperature and Pressure. Appl. Sci. 2021, 11, 5969.
https://doi.org/10.3390/app11135969
AMA Style
Aghoutane N, Pérez LM, Tiutiunnyk A, Laroze D, Baskoutas S, Dujardin F, Fatimy AE, El-Yadri M, Feddi EM.
Adjustment of Terahertz Properties Assigned to the First Lowest Transition of (D+, X) Excitonic Complex in a Single Spherical Quantum Dot Using Temperature and Pressure. Applied Sciences. 2021; 11(13):5969.
https://doi.org/10.3390/app11135969
Chicago/Turabian Style
Aghoutane, Noreddine, Laura M. Pérez, Anton Tiutiunnyk, David Laroze, Sotirios Baskoutas, Francis Dujardin, Abdelouahad El Fatimy, Mohamed El-Yadri, and El Mustapha Feddi.
2021. "Adjustment of Terahertz Properties Assigned to the First Lowest Transition of (D+, X) Excitonic Complex in a Single Spherical Quantum Dot Using Temperature and Pressure" Applied Sciences 11, no. 13: 5969.
https://doi.org/10.3390/app11135969
APA Style
Aghoutane, N., Pérez, L. M., Tiutiunnyk, A., Laroze, D., Baskoutas, S., Dujardin, F., Fatimy, A. E., El-Yadri, M., & Feddi, E. M.
(2021). Adjustment of Terahertz Properties Assigned to the First Lowest Transition of (D+, X) Excitonic Complex in a Single Spherical Quantum Dot Using Temperature and Pressure. Applied Sciences, 11(13), 5969.
https://doi.org/10.3390/app11135969