Innovative Multidisciplinary Journal of Applied Technology Том 2 № 11 (2024) · с. 42-53

A Silica Core-Shell Cylinder Photonic Nanojet with Cylindrical Pores

Jabar, Shakhawan Jalal, Sleman, Sardar Mohamed Law, Othman, Mohammed Arif

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Аннотация

A tunable photonic nanojet structure is proposed based on a silica core-shell microcylinder with cylindrical pores. The exact solution of electromagnetic wave scattering from silica core-shell microcylinder was done using the boundary value problem. The effects of porosity, core diameter, shell thicknesses, and type of incident light polarization on the main parameters of photonic nanojet were studied. The results show that with the porosity increasing the photonic nanojet length, focal length, and full with at half maximum of photonic nanojet are increased. However, energy enhancement in the focal spot is decreased by increasing porosity. Furthermore, in many structural conditions, the focal length for TE polarized light is larger or equal to the TM polarization case. The proper photonic nanojet for particular applications is accessible by tuning the geometrical and physical parameters of the porous silica core-shell microcylinder.

Photonic NanojetPorosityPorous SilicaScatteringMicrocylinder

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APA 7
Jabar, Shakhawan Jalal, Sleman, Sardar Mohamed Law & Othman, Mohammed Arif (2024). A Silica Core-Shell Cylinder Photonic Nanojet with Cylindrical Pores. Innovative Multidisciplinary Journal of Applied Technology, 2(11), 42-53.
GOST R 7.0.5
Jabar, Shakhawan Jalal, Sleman, Sardar Mohamed Law, Othman, Mohammed Arif A Silica Core-Shell Cylinder Photonic Nanojet with Cylindrical Pores // Innovative Multidisciplinary Journal of Applied Technology. 2024. Т. 2. № 11. С. 42-53.
BibTeX
@article{jalal2024,
  author  = {Jabar, Shakhawan Jalal and Sleman, Sardar Mohamed Law and Othman, Mohammed Arif},
  title   = {A Silica Core-Shell Cylinder Photonic Nanojet with Cylindrical Pores},
  journal = {Innovative Multidisciplinary Journal of Applied Technology},
  year    = {2024},
  volume  = {2},
  number  = {11},
  pages   = {42-53}
}
RIS
TY  - JOUR
AU  - Jabar, Shakhawan Jalal
AU  - Sleman, Sardar Mohamed Law
AU  - Othman, Mohammed Arif
TI  - A Silica Core-Shell Cylinder Photonic Nanojet with Cylindrical Pores
JO  - Innovative Multidisciplinary Journal of Applied Technology
PY  - 2024
VL  - 2
IS  - 11
SP  - 42
EP  - 53
ER  -