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首页> 外文期刊>Journal of Applied Physics >Extracting third order optical nonlinearities of Mn(lll)-Phthalocyanine chloride using high repetition rate femtosecond pulses
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Extracting third order optical nonlinearities of Mn(lll)-Phthalocyanine chloride using high repetition rate femtosecond pulses

机译:使用高重复率飞秒脉冲提取Mn(III)-酞菁氯化物的三阶光学非线性

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Third order nonlinearities of Mn(III)-Phthalocyanine chloride in dimethyl-sulphoxide under 50 fs pulses, operating at 94 MHz, by eliminating cumulative thermal effects have been investigated and reported by us. Modifications were done in data acquisition during Z-scan experiment, which included recording of time evolution waveform traces in an oscilloscope and not collection of Z versus transmission and utilization of a chopper of a suitable duty cycle. Time evolution traces were further processed analytically through MatLab® programming, which yielded Z-scan traces similar to what was obtained with single shot 50 fs pulse. We observed reverse saturable absorption at 800nm owing to excited state absorption. We show that the nonlinear refractive index (7) and nonlinear absorption coefficient (ft) are over estimated almost 100 times, when MHz pulses are used compared to a situation, where thermo-optical nonlinearities are accounted. Illumination and dark periods are carefully set in a way, so that the sample is able to completely recover its initial temperature before arrival of the next pulse. Magnitudes of γ and ß were found to be -(6.5-4.9) x 10~(-16)m~2/W and (5.4-6.2) x 10~(-10)m/W under the MHz condition, whereas they were -(0.18-2.2) x 10~(-18)m~2/W and (9.5-15) x 10~(-l2)m/W under the thermally managed condition, respectively. To reveal the associated fast nonlinearity, femtosecond transient absorption experiment was performed, which inferred excited state absorption and ground state bleaching across the 450-780 nm region. Dynamics associated with these processes are reported along with fluorescence lifetime obtained through the TCSPC technique. Structure optimization using TDDFT calculations and HOMO-LUMO gaps with orbital pictures are also shown.
机译:通过消除累积热效应,在94 MHz下工作的50 fs脉冲下,二甲基亚砜中Mn(III)-酞菁氯化物的三阶非线性已经被研究和报道。在Z扫描实验期间的数据采集中进行了修改,包括在示波器中记录时间演变波形轨迹,而不采集Z值与合适占空比的斩波器的传输和利用率。时间演化轨迹通过MatLab®编程进行了进一步分析处理,产生的Z扫描轨迹类似于单脉冲50 fs脉冲获得的轨迹。由于激发态吸收,我们在800nm处观察到了反向饱和吸收。我们显示,与使用热光非线性的情况相比,使用MHz脉冲时,非线性折射率(7)和非线性吸收系数(ft)大约高出了近100倍。照度和暗周期的设置是经过精心设置的,因此样品能够在下一个脉冲到达之前完全恢复其初始温度。在MHz条件下,γ和ß的幅度分别为-(6.5-4.9)x 10〜(-16)m〜2 / W和(5.4-6.2)x 10〜(-10)m / W在热管理条件下分别为-(0.18-2.2)x 10〜(-18)m〜2 / W和(9.5-15)x 10〜(-l2)m / W。为了揭示相关的快速非线性,进行了飞秒瞬态吸收实验,该实验推断出在450-780 nm区域内的激发态吸收和基态漂白。报告了与这些过程相关的动力学以及通过TCSPC技术获得的荧光寿命。还显示了使用TDDFT计算的结构优化以及带有轨道图片的HOMO-LUMO间隙。

著录项

  • 来源
    《Journal of Applied Physics 》 |2017年第5期| 053103.1-053103.11| 共11页
  • 作者单位

    Department of Chemistry, Indian Institute of Technology Kanpur, Kanpur 208016, Uttar Pradesh, India;

    Center for Lasers and Photonics, Indian Institute of Technology Kanpur, Kanpur 208016, Uttar Pradesh, India;

    Center for Lasers and Photonics, Indian Institute of Technology Kanpur, Kanpur 208016, Uttar Pradesh, India;

    Department of Chemistry, Indian Institute of Technology Kanpur, Kanpur 208016, Uttar Pradesh, India,Center for Lasers and Photonics, Indian Institute of Technology Kanpur, Kanpur 208016, Uttar Pradesh, India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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