Generation of Photonic Hooks under Point-Source Illumination from Patchy Microcylinders

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Generation of Photonic Hooks under Point-Source Illumination from Patchy Microcylinders. / Shang, Qingqing; Xu, Chu; Tang, Fen et al.
Yn: Photonics, Cyfrol 9, Rhif 9, 667, 19.09.2022.

Allbwn ymchwil: Cyfraniad at gyfnodolynErthygladolygiad gan gymheiriaid

HarvardHarvard

Shang, Q, Xu, C, Tang, F, Li, J, Fan, Y, Yuan, C, Wang, Z, Zuo, C & Ye, R 2022, 'Generation of Photonic Hooks under Point-Source Illumination from Patchy Microcylinders', Photonics, cyfrol. 9, rhif 9, 667.

APA

Shang, Q., Xu, C., Tang, F., Li, J., Fan, Y., Yuan, C., Wang, Z., Zuo, C., & Ye, R. (2022). Generation of Photonic Hooks under Point-Source Illumination from Patchy Microcylinders. Photonics, 9(9), Erthygl 667.

CBE

Shang Q, Xu C, Tang F, Li J, Fan Y, Yuan C, Wang Z, Zuo C, Ye R. 2022. Generation of Photonic Hooks under Point-Source Illumination from Patchy Microcylinders. Photonics. 9(9):Article 667.

MLA

VancouverVancouver

Shang Q, Xu C, Tang F, Li J, Fan Y, Yuan C et al. Generation of Photonic Hooks under Point-Source Illumination from Patchy Microcylinders. Photonics. 2022 Medi 19;9(9):667.

Author

Shang, Qingqing ; Xu, Chu ; Tang, Fen et al. / Generation of Photonic Hooks under Point-Source Illumination from Patchy Microcylinders. Yn: Photonics. 2022 ; Cyfrol 9, Rhif 9.

RIS

TY - JOUR

T1 - Generation of Photonic Hooks under Point-Source Illumination from Patchy Microcylinders

AU - Shang, Qingqing

AU - Xu, Chu

AU - Tang, Fen

AU - Li, Jiaji

AU - Fan, Yao

AU - Yuan, Caojin

AU - Wang, Zengbo (James )

AU - Zuo, Chao

AU - Ye, Ran

PY - 2022/9/19

Y1 - 2022/9/19

N2 - Photonic hook (PH) is a new type of non-evanescent light beam with subwavelength curved structures. It has shown promising applications in super-resolution imaging and has the potential to be used in micromachining, optical trapping, etc. PHs are generally produced by illuminating mesoscale asymmetric particles with optical plane waves. In this work, we used the finite-difference time-domain (FDTD) method to investigate the PH phenomenon under point-source illumination. We found that the PHs can be effectively generated from point-source illuminated patchy particles. By changing the background refractive index, particle diameters and the position and coverage ratio of Ag patches, the characteristics of the PHs can be effectively tuned. Moreover, the structure of the intensity distribution of the light field generated from small and large particles can have an opposite bending direction due to the near-field light-matter interaction.

AB - Photonic hook (PH) is a new type of non-evanescent light beam with subwavelength curved structures. It has shown promising applications in super-resolution imaging and has the potential to be used in micromachining, optical trapping, etc. PHs are generally produced by illuminating mesoscale asymmetric particles with optical plane waves. In this work, we used the finite-difference time-domain (FDTD) method to investigate the PH phenomenon under point-source illumination. We found that the PHs can be effectively generated from point-source illuminated patchy particles. By changing the background refractive index, particle diameters and the position and coverage ratio of Ag patches, the characteristics of the PHs can be effectively tuned. Moreover, the structure of the intensity distribution of the light field generated from small and large particles can have an opposite bending direction due to the near-field light-matter interaction.

M3 - Article

VL - 9

JO - Photonics

JF - Photonics

SN - 2304-6732

IS - 9

M1 - 667

ER -