Wavelength-selective second-harmonic splitting and focusing in engineered χ (2) photonic crystals

We demonstrate a multifunctional engineered χ (2) photonic crystal that integrates second-harmonic generation, wavelength selectivity, beam splitting, and focusing within a single χ (2) -modulated ferroelectric photonic structure. Rather than encoding a single nonlinear wavefront, the engineered spatial χ (2) modulation multiplexes wavelength-dependent phase-mismatch compensation and wavefront-encoding conditions, allowing different pump wavelengths to access distinct second-harmonic focusing responses. As a proof of concept, a 1050 nm pump is converted to 525 nm second-harmonic light and focused into two spatially separated spots, whereas a 1100 nm pump is converted to 550 nm second-harmonic light and focused into three spots. The measured multi-spot patterns and deflection angles agree well with the numerical design, while wavelength-resolved measurements confirm selective excitation of the encoded double-focus and triple-focus channels. These results establish a compact strategy for multiplexing independently prescribed nonlinear output functions within a single engineered χ (2) structure.

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Publication Details

Journal
Optics Express
Published
2026-10-07
DOI
https://doi.org/10.1364/oe.612943
Primary Topic
Photorefractive and Nonlinear Optics
Type
article
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article

Wavelength-selective second-harmonic splitting and focusing in engineered χ (2) photonic crystals

Yan Sheng, Tianxiang Xu, Shan Liu, 赵如薇 Zhao Ruwei et al.
Optics Express
Photorefractive and Nonlinear Optics
article

Wavelength-selective second-harmonic splitting and focusing in engineered χ (2) photonic crystals

Yan Sheng, Tianxiang Xu, Shan Liu, 赵如薇 Zhao Ruwei, 崔宗恒 Cui Zongheng
article en

Abstract

We demonstrate a multifunctional engineered χ (2) photonic crystal that integrates second-harmonic generation, wavelength selectivity, beam splitting, and focusing within a single χ (2) -modulated ferroelectric photonic structure. Rather than encoding a single nonlinear wavefront, the engineered spatial χ (2) modulation multiplexes wavelength-dependent phase-mismatch compensation and wavefront-encoding conditions, allowing different pump wavelengths to access distinct second-harmonic focusing responses. As a proof of concept, a 1050 nm pump is converted to 525 nm second-harmonic light and focused into two spatially separated spots, whereas a 1100 nm pump is converted to 550 nm second-harmonic light and focused into three spots. The measured multi-spot patterns and deflection angles agree well with the numerical design, while wavelength-resolved measurements confirm selective excitation of the encoded double-focus and triple-focus channels. These results establish a compact strategy for multiplexing independently prescribed nonlinear output functions within a single engineered χ (2) structure.

Optics ExpressVol. 34(21)
Australian National University (AU)
Openalex Percentile: Top 19%
Photorefractive and Nonlinear Optics
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Wavelength-selective second-harmonic splitting and focusing in engineered χ (2) photonic crystals — Yan Sheng, Tianxiang Xu, et al. · Optics Express (2026) | TGRS Research Map | TGRS