A. S. Durmuslar Et Al. , "Effect of Razavy potential well parameters on the optical rectification, second, and third harmonic generation coefficients of Razavy quantum well in the presence of electric, magnetic, and THz laser fields," OPTICAL AND QUANTUM ELECTRONICS , vol.54, no.10, 2022
Durmuslar, A. S. Et Al. 2022. Effect of Razavy potential well parameters on the optical rectification, second, and third harmonic generation coefficients of Razavy quantum well in the presence of electric, magnetic, and THz laser fields. OPTICAL AND QUANTUM ELECTRONICS , vol.54, no.10 .
Durmuslar, A. S., Peter, A. J., & UNGAN, F., (2022). Effect of Razavy potential well parameters on the optical rectification, second, and third harmonic generation coefficients of Razavy quantum well in the presence of electric, magnetic, and THz laser fields. OPTICAL AND QUANTUM ELECTRONICS , vol.54, no.10.
Durmuslar, Aysevil, Amalorpavam John Peter, And FATİH UNGAN. "Effect of Razavy potential well parameters on the optical rectification, second, and third harmonic generation coefficients of Razavy quantum well in the presence of electric, magnetic, and THz laser fields," OPTICAL AND QUANTUM ELECTRONICS , vol.54, no.10, 2022
Durmuslar, Aysevil S. Et Al. "Effect of Razavy potential well parameters on the optical rectification, second, and third harmonic generation coefficients of Razavy quantum well in the presence of electric, magnetic, and THz laser fields." OPTICAL AND QUANTUM ELECTRONICS , vol.54, no.10, 2022
Durmuslar, A. S. Peter, A. J. And UNGAN, F. (2022) . "Effect of Razavy potential well parameters on the optical rectification, second, and third harmonic generation coefficients of Razavy quantum well in the presence of electric, magnetic, and THz laser fields." OPTICAL AND QUANTUM ELECTRONICS , vol.54, no.10.
@article{article, author={Aysevil Salman Durmuslar Et Al. }, title={Effect of Razavy potential well parameters on the optical rectification, second, and third harmonic generation coefficients of Razavy quantum well in the presence of electric, magnetic, and THz laser fields}, journal={OPTICAL AND QUANTUM ELECTRONICS}, year=2022}