首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Nonlinear response and optical limiting in inorganic metal cluster Mo2Ag4S8(PPh3)(4) solutions
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Nonlinear response and optical limiting in inorganic metal cluster Mo2Ag4S8(PPh3)(4) solutions

机译:无机金属簇Mo2Ag4S8(PPh3)(4)溶液中的非线性响应和光学极限

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We describe a series of experiments on acetonitrile solutions of an inorganic cluster molecule Mo2Ag4S8(PPh3)(4) and compare them with data on a suspension of carbon particles in liquid (dilute ink). The optical-limiting behavior is measured by single-picosecond 532-nm pulses and nanosecond-long trains of these picosecond pulses. Nonlinear loss measurements are also performed with pulse trains at 1064 nm. Both materials show reduced transmittance for increasing fluence (energy per unit area). We also perform picosecond time-resolved pump-probe measurements at 532 nm, and we find that the observed pump-probe behavior is identical for the metal-cluster solution and the carbon-black suspension. We believe that the nonlinear mechanisms are the same for the two materials. Our previous studies of carbon-black suspension indicate that the primary nonlinear losses are due to scattering and absorption by microplasmas formed after thermionic emission from heated carbon black augmented by scattering from subsequently created bubbles. The conclusion of a similar limiting mechanism for the two materials is confirmed by time-resolved shadowgraphic images taken on both samples; however, a definitive conclusion concerning the role of microplasmas versus bubbles in either material is still under investigation. (C) 1998 Optical Society of America [S0740-3224(98)00905-9]. [References: 18]
机译:我们描述了无机簇分子Mo2Ag4S8(PPh3)(4)的乙腈溶液上的一系列实验,并将它们与碳颗粒在液体(稀释墨水)中的悬浮液数据进行了比较。光学限制行为是通过单皮秒532 nm脉冲和这些皮秒脉冲的纳秒长序列来测量的。还使用1064 nm的脉冲序列进行非线性损耗测量。两种材料均显示出降低的透射率,以提高通量(单位面积的能量)。我们还在532 nm处进行了皮秒时间分辨的泵浦探针测量,发现对于金属簇溶液和炭黑悬浮液,观察到的泵浦探针行为是相同的。我们认为两种材料的非线性机理是相同的。我们以前对炭黑悬浮液的研究表明,主要的非线性损失是由于加热后的炭黑的热离子发射引起的微等离子体的散射和吸收所致,而炭黑的热离子发射是由于随后产生的气泡的散射而增加的。对两种材料采用类似的限制机制的结论已通过对两种样品拍摄的时间分辨阴影图像进行了证实。然而,关于微等离子体与气泡在两种材料中的作用的确切结论仍在研究中。 (C)1998年美国眼镜学会[S0740-3224(98)00905-9]。 [参考:18]

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