Simultaneous modal phase and group velocity matching in microstructured optical fibers for second harmonic generation with ultrashort pulses

材料科学 光学 二次谐波产生 群速度 包层(金属加工) 光纤 超短脉冲 光子晶体光纤 极化 零色散波长 非线性光学 微结构光纤 准相位匹配 二次谐波成像显微术 光电子学 波长 渐变折射率纤维 光纤传感器 物理 激光器 冶金 电介质 铁电性
作者
Artemii Tishchenko,Thomas Geernaert,Nathalie Vermeulen,Francis Berghmans,Tigran Baghdasaryan
出处
期刊:Optics Express [The Optical Society]
卷期号:30 (7): 12026-12026 被引量:3
标识
DOI:10.1364/oe.453844
摘要

Optical fibers provide a favorable medium for nonlinear optical processes owing to the small mode field size and concurrently high optical intensity combined with the extended interaction lengths. Second harmonic generation (SHG) is one of those processes that has been demonstrated in silica glass optical fibers. Since silica is centrosymmetric, generating SHG in an optical fiber requires poling of the glass. In addition and when one wants to use ultrashort pulses for SHG, achieving both phase and group velocity matching is crucial. Although fibers that feature either modal phase velocity or group velocity matching for SHG have been reported, the possibility of simultaneous modal phase and group velocity matching was never reported before. In this paper we address this challenge, and for the first time to our knowledge, we show that it is feasible to do so with silica microstructured optical fibers featuring at least one ring of air holes in the cladding and a heavily Germanium doped core (above 25 mol.%) by exploiting the LP01(ω) and LP02(2ω) modes at 1.06 µm pump and 0.53 µm second harmonic wavelengths. This finding can greatly impact applications requiring waveguide based SHG generation with ultrashort pulses, including microscopy, material characterization and nonlinear imaging.
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