首页> 外文会议>Conference on Multiphoton Absorption and Nonlinear Transmission Processes: Materials, Theory, and Applications, Jul 8-9, 2002, Seattle, Washington, USA >Optical limiting based on multiphoton processes in carbon nanostructures and heterocyclic quadrupolar molecules
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Optical limiting based on multiphoton processes in carbon nanostructures and heterocyclic quadrupolar molecules

机译:基于碳纳米结构和杂环四极分子中多光子过程的光学限制

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摘要

A novel scheme for implementing the joint exploitation of different, somehow complementary mechanisms of nonlinear transmission in an optical limiting device is proposed. As active materials we have chosen the fullerene derivative FULP. as a reverse saturable absorber, and a new heterocyclic quadrupolar dye. PEPEP. with highly efficient multiphoton absorption for nanosecond pulses. The nonlinear absorption properties of PEPEP in solution are extensively investigated for both femtosecond and nanosecond pulses. When Z-scan experiments are performed with nanosecond pulses, much larger effective cross sections are measured than with femtosecond pulses and with remarkably different wavelength dispersion. This is interpreted as due to two-photon absorption followed by one-photon absorption from the excited state. Chemically modified nonlinear molecules are incorporated in a hybrid organic-inorganic sol-gel matrix. Sufficiently high concentrations are achieved to allow the assembling of thin sol-gel disks into a "tandem" limiter with a total thickness smaller than the Rayleigh range of the focused laser beam. Preliminary testing of our limiter is reported and shows encouraging results. The resistance of the FULP-doped sol-gel glass to laser damage is substantially improved and the nonlinear attenuation at high pulse energies is enhanced.
机译:提出了一种在光学限位装置中实现非线性传输的不同方式的互补机制的联合开发的新方案。作为活性材料,我们选择了富勒烯衍生物FULP。作为一种反向饱和吸收剂,以及一种新型的杂环四极染料。 PEPEP。具有纳秒级脉冲的高效多光子吸收能力。飞秒和纳秒脉冲都对PEPEP在溶液中的非线性吸收特性进行了广泛研究。当使用纳秒脉冲执行Z扫描实验时,所测量的有效横截面要比飞秒脉冲大得多,并且波长色散明显不同。这被解释为是由于从激发态吸收了两个光子,然后吸收了一个光子。化学修饰的非线性分子被掺入杂化有机-无机溶胶-凝胶基质中。获得足够高的浓度以允许将薄的溶胶-凝胶盘组装成“串联”限制器,其总厚度小于聚焦激光束的瑞利范围。报告了对限幅器的初步测试,结果令人鼓舞。掺有FULP的溶胶-凝胶玻璃对激光损伤的抵抗力得到了显着改善,在高脉冲能量下的非线性衰减得到了增强。

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