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具有时间灵活、宽带非线性吸收特性的金属卟啉聚合物用于近红外光限幅

Metalloporphyrin polymer with temporally agile, broadband nonlinear absorption for optical limiting in the near infrared.

作者信息

Hales Joel M, Cozzuol Matteo, Screen Thomas E O, Anderson Harry L, Perry Joseph W

机构信息

School of Chemistry and Biochemistry, Center for Organic Photonics and Electronics, Georgia Institute of Technology, 901 Atlantic Dr NW, Atlanta, Georgia 30332, USA.

出版信息

Opt Express. 2009 Oct 12;17(21):18478-88. doi: 10.1364/OE.17.018478.

Abstract

A lead bis(ethynyl)porphyrin polymer possesses strong nonlinear absorption with unprecedented spectral/temporal coverage as a result of broad, overlapping two-photon and excited-state absorption bands with favorable excited-state dynamics. Consequently, this material exhibits effective optical limiting over a range of about 500 nm in the near infrared (ca. 1050 - 1600 nm) and for laser pulsewidths spanning from 75 fs to 40 ns. Introduction of the material in a waveguide device geometry results in a strong optical limiting response.

摘要

一种铅双(乙炔基)卟啉聚合物具有很强的非线性吸收,其光谱/时间覆盖范围前所未有的广,这是由于宽广的、重叠的双光子和激发态吸收带以及有利的激发态动力学所致。因此,这种材料在近红外约500纳米范围(约1050 - 1600纳米)内以及对于75飞秒至40纳秒的激光脉冲宽度都表现出有效的光学限幅。将该材料引入波导器件结构中会产生强烈的光学限幅响应。

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