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具有优异光学限幅性能的铁氧体核壳纳米结构中的增强超快非线性光学响应

Enhanced Ultrafast Nonlinear Optical Response in Ferrite Core/Shell Nanostructures with Excellent Optical Limiting Performance.

作者信息

Perumbilavil Sreekanth, López-Ortega Alberto, Tiwari Gaurav Kumar, Nogués Josep, Endo Tamio, Philip Reji

机构信息

Ultrafast and Nonlinear Optics Lab, Light and Matter Physics Group, Raman Research Institute, Bangalore, 560080, India.

CIC nanoGUNE, Tolosa Hiribidea 76, E-20018, Donostia-San Sebastian, Spain.

出版信息

Small. 2018 Feb;14(6). doi: 10.1002/smll.201701001. Epub 2018 Jan 11.

DOI:10.1002/smll.201701001
PMID:29323449
Abstract

Nonlinear optical nanostructured materials are gaining increased interest as optical limiters for various applications, although many of them suffer from reduced efficiencies at high-light fluences due to photoinduced deterioration. The nonlinear optical properties of ferrite core/shell nanoparticles showing their robustness for ultrafast optical limiting applications are reported. At 100 fs ultrashort laser pulses the effective two-photon absorption (2PA) coefficient shows a nonmonotonic dependence on the shell thickness, with a maximum value obtained for thin shells. In view of the local electric field confinement, this indicates that core/shell is an advantageous morphology to improve the nonlinear optical parameters, exhibiting excellent optical limiting performance with effective 2PA coefficients in the range of 10 cm W (100 fs excitation), and optical limiting threshold fluences in the range of 1.7 J cm . These values are comparable to or better than most of the recently reported optical limiting materials. The quality of the open aperture Z-scan data recorded from repeat measurements at intensities as high as 35 TW cm , indicates their considerably high optical damage thresholds in a toluene dispersion, ensuring their robustness in practical applications. Thus, the high photostability combined with the remarkable nonlinear optical properties makes these nanoparticles excellent candidates for ultrafast optical limiting applications.

摘要

非线性光学纳米结构材料作为各种应用的光限幅器正越来越受到关注,尽管它们中的许多由于光致劣化在高光通量下效率会降低。本文报道了铁氧体核壳纳米粒子的非线性光学性质,其在超快光限幅应用中表现出稳健性。在100飞秒超短激光脉冲下,有效双光子吸收(2PA)系数对壳层厚度呈现非单调依赖性,薄壳层可获得最大值。考虑到局部电场限制,这表明核壳结构是改善非线性光学参数的有利形态,在10厘米/瓦(100飞秒激发)范围内具有有效的2PA系数,光限幅阈值通量在1.7焦/平方厘米范围内,展现出优异的光限幅性能。这些值与最近报道的大多数光限幅材料相当或更好。在高达35太瓦/平方厘米的强度下重复测量记录的开孔Z扫描数据质量,表明它们在甲苯分散体中的光学损伤阈值相当高,确保了它们在实际应用中的稳健性。因此,高光稳定性与显著的非线性光学性质相结合,使这些纳米粒子成为超快光限幅应用的优秀候选材料。

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