Photonics Research, Volume. 10, Issue 10, 2337(2022)
Hybrid plasmonic–dielectric metal-nanowire coupler for high-efficiency broadband nonlinear frequency conversion
Fig. 1. ZnTe/ZnO core–shell NWs. (a), (b) 3D schematic illustrations and (c), (d) top-view SEM images of a bare and Ag-NP-decorated ZnTe/ZnO core–shell NW on quartz substrate, respectively.
Fig. 2. Enhanced frequency conversion from the Ag-NP-decorated ZnTe/ZnO NW plasmonic–dielectric coupler. (a), (b) Power-dependent SHG outputs of bare and Ag-NP-decorated ZnTe/ZnO NWs under TE and TM excitations, respectively; (c), (d) their respective quadratic relationships of average pumping power and SHG outputs under TE and TM excitations.
Fig. 3. Dielectric resonances and LSPR supported in Ag-NP-decorated ZnTe/ZnO NWs. (a), (b) Calculated absorption cross section (
Fig. 4. Enhanced Raman scattering from the plasmonic–dielectric NW coupler. (a), (b) Raman scattering spectra measured from a bare and an Ag-NP-decorated ZnO/ZnTe NW with various excitation powers, respectively. (c) Raman scattering intensity of the 1LO phonon mode as a function of excitation power for a bare and an Ag-NP-decorated ZnO/ZnTe NW. All intensities of Raman scattering are with respect to the referenced quartz substrate.
Fig. 5. Polarization controllability and broadband output of the SHG. (a) Polarized SHG signals from an Ag-NP-decorated ZnTe/ZnO NW excited under FW wavelength of 785 nm under TE and TM configurations. (b) SHG spectra measured at different pump wavelengths, and the wavelength-dependent FW pumping power is shown for reference.
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Kui-Ying Nie, Song Luo, Fang-Fang Ren, Xuanhu Chen, Shulin Gu, Zhanghai Chen, Rong Zhang, Jiandong Ye, "Hybrid plasmonic–dielectric metal-nanowire coupler for high-efficiency broadband nonlinear frequency conversion," Photonics Res. 10, 2337 (2022)
Category: Nonlinear Optics
Received: Jun. 3, 2022
Accepted: Aug. 15, 2022
Published Online: Sep. 27, 2022
The Author Email: Fang-Fang Ren (ffren@nju.edu.cn), Zhanghai Chen (zhanghai@xmu.edu.cn), Jiandong Ye (yejd@nju.edu.cn)