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氧化铁纳米颗粒的光学限幅研究。

Investigation of optical limiting in iron oxide nanoparticles.

作者信息

Singh C P, Bindra K S, Bhalerao G M, Oak S M

机构信息

Laser Physics Application Division, Raja Ramanna Centre for Advanced Technology, Indore-452013 India.

出版信息

Opt Express. 2008 Jun 9;16(12):8440-50. doi: 10.1364/oe.16.008440.

Abstract

We present the study of optical limiting in iron oxide nanoparticles of diameters 31, 44, and 61 nm dispersed in toluene under exposure to nanosecond laser pulses at 532 nm. In the low fluence region smaller size nanoparticles show better optical limiting compared to larger size nanoparticles while in the high fluence region all the three samples show same limiting performance. Experimental results were compared with the well reported limiter fullerene C(60) dissolved in toluene. Iron oxide nanoparticles show better optical limiting compared to C(60) in the intermediate fluence region and comparable performance in the high fluence region. The pico-second Z-scan studies indicate that the contribution of electronic nonlinear refractive index and the two-photon absorption to the optical limiting is negligible. Our observations further indicate that the dominant mechanism for the optical limiting in iron oxide nanoparticles is nonlinear scattering.

摘要

我们展示了对直径为31、44和61纳米的氧化铁纳米颗粒在甲苯中分散,并暴露于532纳米纳秒激光脉冲下的光学限幅研究。在低能量密度区域,较小尺寸的纳米颗粒比较大尺寸的纳米颗粒表现出更好的光学限幅性能,而在高能量密度区域,所有三个样品都表现出相同的限幅性能。实验结果与已充分报道的溶解在甲苯中的限幅剂富勒烯C(60)进行了比较。在中等能量密度区域,氧化铁纳米颗粒比C(60)表现出更好的光学限幅性能,在高能量密度区域性能相当。皮秒Z扫描研究表明,电子非线性折射率和双光子吸收对光学限幅的贡献可以忽略不计。我们的观察进一步表明,氧化铁纳米颗粒光学限幅的主要机制是非线性散射。

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