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Synthesis of Optical-Quality Single-Crystal β-BaB_2O_4 Micro wires and Nanowires

机译:光学品质的单晶β-BaB_2O_4纳米线和纳米线的合成

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The synthesis of optical quality β-barium borate microwires and nanowires (MNWs) is reported using an organic-free hydrothermal method with BaCI_2·6H_2O, NaOH, and H_3BO_3 as source materials, and assisted with post-annealing. As-synthesized MNWs, with diameters ranging from 500 nm to 2μm and lengths up to several hundred micrometers, show good optical-waveguiding capabilities. Based on evanescent coupling between a single BBO MNW waveguide and a fiber taper, propagation losses of 0.30 dB μm~(-1) (at 532 nm) and 0.21 dB μm~(-1) (at 671 nm) are evaluated, respectively. An evident second-harmonic generation (SHC) signal at 532 nm with a measured conversion efficiency of about 8.4% is observed when excited by waveguided 1064 nm, picosecond laser pulses within a BBO MNW with a length of the order of 100 μm The dependence of the SHC conversion efficiency on the MNW diameter is also investigated. These results show a much-higher SHC efficiency for BBO single-crystal MNWs compared with bulk crystal, which suggests potential applications in future micro-anoscale nonlinear optical applications such as optical modulation and frequency conversion.
机译:报道了使用BaCl_2·6H_2O,NaOH和H_3BO_3作为原料的无有机水热法合成光学质量的β-硼酸钡微丝和纳米线(MNW),并辅助后退火。合成后的MNW直径范围从500 nm到2μm,长度可达几百微米,具有良好的光波导能力。基于单个BBO MNW波导和光纤锥度之间的e逝耦合,分别评估了0.30 dBμm〜(-1)(在532 nm)和0.21 dBμm〜(-1)(在671 nm)的传播损耗。当在波长为100μm的BBO MNW中通过波导的1064 nm皮秒激光脉冲激发时,在532 nm处观察到明显的二次谐波(SHC)信号,测得的转换效率约为8.4%。还研究了MNW直径上的SHC转换效率。这些结果表明,与大晶体相比,BBO单晶MNW的SHC效率要高得多,这表明在未来的微/纳米非线性光学应用中有潜在的应用,例如光学调制和频率转换。

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  • 来源
    《Advanced Functional Materials 》 |2013年第10期| 1232-1237| 共6页
  • 作者单位

    State Key Laboratory of Modern Optical Instrumentation Department of Optical Engineering Zhejiang University Hangzhou, 310027, China;

    State Key Laboratory of Modern Optical Instrumentation Department of Optical Engineering Zhejiang University Hangzhou, 310027, China;

    State Key Laboratory of Modern Optical Instrumentation Department of Optical Engineering Zhejiang University Hangzhou, 310027, China;

    State Key Laboratory of Modern Optical Instrumentation Department of Optical Engineering Zhejiang University Hangzhou, 310027, China;

    State Key Laboratory of Modern Optical Instrumentation Department of Optical Engineering Zhejiang University Hangzhou, 310027, China;

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