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Sub-Diffraction Photon Trapping: The Possible Optical Energy Eigenstates within a Tiny Circular Aperture with a Finite Depth
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O. T. Gündüz Et Al. , "Sub-Diffraction Photon Trapping: The Possible Optical Energy Eigenstates within a Tiny Circular Aperture with a Finite Depth," Electronics (Switzerland) , vol.12, no.23, 2023

Gündüz, O. T. Et Al. 2023. Sub-Diffraction Photon Trapping: The Possible Optical Energy Eigenstates within a Tiny Circular Aperture with a Finite Depth. Electronics (Switzerland) , vol.12, no.23 .

Gündüz, O. T., Leitgeb, E., & SABAH, C., (2023). Sub-Diffraction Photon Trapping: The Possible Optical Energy Eigenstates within a Tiny Circular Aperture with a Finite Depth. Electronics (Switzerland) , vol.12, no.23.

Gündüz, Ozan, Erich Leitgeb, And CUMALİ SABAH. "Sub-Diffraction Photon Trapping: The Possible Optical Energy Eigenstates within a Tiny Circular Aperture with a Finite Depth," Electronics (Switzerland) , vol.12, no.23, 2023

Gündüz, Ozan T. Et Al. "Sub-Diffraction Photon Trapping: The Possible Optical Energy Eigenstates within a Tiny Circular Aperture with a Finite Depth." Electronics (Switzerland) , vol.12, no.23, 2023

Gündüz, O. T. Leitgeb, E. And SABAH, C. (2023) . "Sub-Diffraction Photon Trapping: The Possible Optical Energy Eigenstates within a Tiny Circular Aperture with a Finite Depth." Electronics (Switzerland) , vol.12, no.23.

@article{article, author={Ozan Turhan Gündüz Et Al. }, title={Sub-Diffraction Photon Trapping: The Possible Optical Energy Eigenstates within a Tiny Circular Aperture with a Finite Depth}, journal={Electronics (Switzerland)}, year=2023}