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Generation of tunable blue-green light using ZnO periodically poled lithium niobate crystal fiber by self-cascaded second-order nonlinearity

机译:ZnO周期性极化的铌酸锂晶体光纤通过自级联二阶非线性产生可调谐的蓝绿色光

摘要

[[abstract]]Using a novel self-cascaded first-order second-harmonic generation (SHG) and third-order sum-frequency generation (SFG) in a ZnO periodically poled lithium niobate crystal fiber, tunable blue-green light was demonstrated. At a domain pitch of 15.45 μm, the SHG signal and its fundamental signal at 1423.9 nm can satisfy the third-order SFG quasi-phase-matched (QPM) condition. The measured SHG power at 714.2 nm was 12.25 mW under 100 mW input power, and the estimated nonlinear coefficient (d33) achieved was 25.3 pm/V. The self-cascaded SHG+SFG power measured at 477.1 nm was ∼700 μW under 350 mW input power. The maximum internal efficiency of the SHG is 14.84%. The tuning range of the self-cascaded SHG and SFG generated tunable blue-green light was more than 40 nm, from 471.3 to 515 nm. The maximum simulated 3 dB bandwidth achieved using a gradient-period QPM structure is 196 nm, which is from 1476 to 1672 nm. The gain-bandwidth product of the self-cascaded SHG and SFG processes decreases drastically as the bandwidth is broadened.
机译:[[摘要]]在ZnO周期极化铌酸锂晶体光纤中使用新颖的自级联一阶二次谐波生成(SHG)和三阶和频生成(SFG),展示了可调的蓝绿色光。在15.45μm的畴节距下,SHG信号及其在1423.9 nm处的基波信号可以满足三阶SFG准相位匹配(QPM)条件。在100 mW输入功率下,在714.2 nm处测得的SHG功率为12.25 mW,获得的估计非线性系数(d33)为25.3 pm / V。在350 mW输入功率下,在477.1 nm处测得的自级联SHG + SFG功率约为700μW。 SHG的最大内部效率为14.84%。自级联SHG和SFG生成的可调蓝绿光的调谐范围从471.3到515 nm超过40 nm。使用梯度周期QPM结构获得的最大模拟3 dB带宽为196 nm,即1476至1672 nm。随着带宽的增加,自级联SHG和SFG过程的增益带宽乘积急剧下降。

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  • 作者

    L. M. Lee;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 [[iso]]en
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