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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Optical nonlinearities of hypocrellin A with the excitation of nanosecond pulses
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Optical nonlinearities of hypocrellin A with the excitation of nanosecond pulses

机译:亚甲酚A的光学非线性与纳秒脉冲的激发

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Nonlinear absorption and nonlinear refraction in the resonant region and the two-photon absorption (TPA) region of hypocrellin A (HA) have been investigated, for the first time to our knowledge, using the Z-scan technique and intensity-dependent transmittance measurement with nanosecond pulses. At 0.53 mu m the effective absorption of the triplet stale of the normal form of HA is the dominant mechanism causing the reverse saturable absorption. The refractive nonlinearities of EIA can be mainly attributed to the thermal effect. With the excitation at 1.06 mu m the optical limiting behavior in HA may be caused by the TPA of its ground state. The ground state of HA exhibits a large real part of second-order hyperpolarizability. By establishing the kinetic model for HA, we obtained several nonlinear optical parameters, such as the cross section of TPA, the absorption cross sections of the excited state and the triplet state of the normal form of HA, and the real part of second-order hyperpolarizability of the ground state of HA. The theoretical results are in good agreement with the experimental ones, which not only shows the completeness of the kinetic model but also demonstrates the close relationship between the optical nonlinearities of HA and its dynamic processes. In addition, HA. has been proved to be a potential optical limiting material. (C) 1998 Optical Society of America [S0740-3224(98)00605-5]. [References: 21]
机译:据我们所知,首次使用Z扫描技术和强度相关的透射率测量技术研究了hypercrelinin A(HA)的共振区和双光子吸收(TPA)区的非线性吸收和非线性折射。纳秒脉冲。在0.53μm处,HA正常形式的三重态陈旧状态的有效吸收是引起反向饱和吸收的主要机理。 EIA的折射非线性可以主要归因于热效应。在1.06μm处激发时,HA的光学限制行为可能是由其基态的TPA引起的。 HA的基态表现出很大的二阶超极化性。通过建立HA的动力学模型,我们获得了几个非线性光学参数,例如TPA的截面,HA的正态形式的激发态和三重态的吸收截面以及二阶实部。 HA的基态的超极化性。理论结果与实验结果吻合良好,不仅说明了动力学模型的完整性,而且还证明了HA的光学非线性与其动力学过程之间的密切关系。另外,HA。已被证明是潜在的光学限制材料。 (C)1998年美国眼镜学会[S0740-3224(98)00605-5]。 [参考:21]

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