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dc.creator | Elsharkawi, Adel S. A. | |
dc.creator | Tsai, I-Chen | |
dc.creator | Lin, Xiang-Ting | |
dc.creator | Chang, Chia-Yuan | |
dc.creator | Lo, Yu-Lung | |
dc.date.accessioned | 2024-12-12T22:40:17Z | |
dc.date.available | 2024-12-12T22:40:17Z | |
dc.date.issued | 2024 | |
dc.identifier.uri | http://hdl.handle.net/123456789/15478 | |
dc.description.abstract | This paper is devoted to studying the Bessel beam propagation in cylindrical coordinates using the Hankel transform beam propagation method (HT-BPM) and their behavior in different scenarios in the microscale and meter scale of propagation distances. The study compares the results obtained from the HT-BPM with another fast Fourier transform beam propagation method (FFT-BPM) to validate the accuracy and effectiveness of the HT-BPM in modeling Bessel beam propagation. The axial intensity of Bessel beam propagation is analyzed using the HT-BPM. The simulation results obtained from the HT-BPM are compared with those from the FFT-BPM to evaluate the agreement and consistency between the two methods in predicting the axial intensity of Bessel beam propagation. The results show that the HT-BPM is numerically faster than the FFT-BPM by ten times for different sampling points, furthermore, the FFT-BPM accuracy for evaluating the Bessel beam spot radius is 89.9% of the analytical value, while the HT-BPM is 99% relative to analytical value. The prediction of the axial intensity of the Bessel beam has been tested at different types of phase functions and different propagation distances: micrometer, centimeter, and meter scales. The results of the HT-BPM are matched with the analytical and experimental values. Finally, the HT-BPM is tested when the input light source takes different profiles. | es |
dc.format.extent | 14 p. | es |
dc.relation.ispartof | Optics Express, 32(17), 30242-30255. | es |
dc.rights | Acceso Abierto | |
dc.title | Bessel beam propagation using radial beam propagation method at different propagation scales | es |
dc.type | ArtRev | es |
uade.subject.descriptor | Óptica | es |
uade.subject.descriptor | Luz | es |
academic.materia.codigo | 3.3.071 | es |
academic.materia.nombre | Medios de Comunicación | es |
dc.rights.license | Acceso Abierto |