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The effect of position-dependent effective mass on the optical properties of a spherical quantum dot confined in inverse square root truncated and deformed exponential potential
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K. BAYRAK Et Al. , "The effect of position-dependent effective mass on the optical properties of a spherical quantum dot confined in inverse square root truncated and deformed exponential potential," European Physical Journal Plus , vol.138, no.6, 2023

BAYRAK, K. Et Al. 2023. The effect of position-dependent effective mass on the optical properties of a spherical quantum dot confined in inverse square root truncated and deformed exponential potential. European Physical Journal Plus , vol.138, no.6 .

BAYRAK, K., KAYA, D., & BAYRAK, O., (2023). The effect of position-dependent effective mass on the optical properties of a spherical quantum dot confined in inverse square root truncated and deformed exponential potential. European Physical Journal Plus , vol.138, no.6.

BAYRAK, KÜBRA, DENİZ KAYA, And ORHAN BAYRAK. "The effect of position-dependent effective mass on the optical properties of a spherical quantum dot confined in inverse square root truncated and deformed exponential potential," European Physical Journal Plus , vol.138, no.6, 2023

BAYRAK, KÜBRA Et Al. "The effect of position-dependent effective mass on the optical properties of a spherical quantum dot confined in inverse square root truncated and deformed exponential potential." European Physical Journal Plus , vol.138, no.6, 2023

BAYRAK, K. KAYA, D. And BAYRAK, O. (2023) . "The effect of position-dependent effective mass on the optical properties of a spherical quantum dot confined in inverse square root truncated and deformed exponential potential." European Physical Journal Plus , vol.138, no.6.

@article{article, author={KÜBRA BAYRAK Et Al. }, title={The effect of position-dependent effective mass on the optical properties of a spherical quantum dot confined in inverse square root truncated and deformed exponential potential}, journal={European Physical Journal Plus}, year=2023}