Photonics Research, Volume. 9, Issue 3, 317(2021)
Highly efficient ultraviolet high-harmonic generation from epsilon-near-zero indium tin oxide films
Fig. 1. (a) X-ray diffraction (XRD) pattern of ITO film; the standard diffraction of
Fig. 2. (a) Calculated real and imaginary parts of the permittivity of ITO film as a function of wavelength. (b) Calculated field enhancements of the ITO film as a function of incident laser wavelength. (c) Calculated field enhancements of the structure as a function of location at 1.03 μm. (d) Schematic of nonlinear harmonic generation on the ENZ sample composed of silicon substrate and ITO film. The pump laser is vertically incident from the ITO side. Notably, the light beam direction of harmonic waves is only a diagrammatic sketch, not the real propagating direction. (e) The harmonic spectrum under different incident pump power densities. The intensity of the third-, fourth-, and fifth-harmonic generation was enlarged for clarity.
Fig. 3. (a) Spectrum of the fundamental wave. (b) The second-harmonic spectrum of ITO film and GaAs (111) crystal with pump intensity of
Fig. 4. (a) Experimental setup for 515 nm pumped second-harmonic generation in ITO film. HR and HT represent high reflectivity (
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Wendong Tian, Fei Liang, Dazhi Lu, Haohai Yu, Huaijin Zhang, "Highly efficient ultraviolet high-harmonic generation from epsilon-near-zero indium tin oxide films," Photonics Res. 9, 317 (2021)
Category: Optical and Photonic Materials
Received: Nov. 12, 2020
Accepted: Dec. 31, 2020
Published Online: Feb. 24, 2021
The Author Email: Fei Liang (liangfei@sdu.edu.cn), Haohai Yu (haohaiyu@sdu.edu.cn)