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金纳米颗粒薄膜中光学非线性大的机制。

Mechanism of large optical nonlinearity in gold nanoparticle films.

作者信息

Mirza I, McCloskey D, Blau W J, Lunney J G

出版信息

Opt Lett. 2018 Apr 1;43(7):1455-1458. doi: 10.1364/OL.43.001455.

DOI:10.1364/OL.43.001455
PMID:29601003
Abstract

The Z-scan technique, using femtosecond (fs) laser pulses at 1480 nm laser pulses, was used to measure the nonlinear optical properties of gold (Au) nanoparticle (NP) films made by both nanosecond (ns) and fs pulsed laser deposition (PLD) in vacuum. At irradiance levels of 1×10  Wm, the ns-PLD films displayed induced absorption with β=4×10  mW, and a negative lensing effect with n=-4.7×10  m W with somewhat smaller values for the fs-PLD films. These values of n imply an unphysically large change in the real part of the refractive index, demonstrating the need to take account of nonlinear changes of the Fresnel coefficients and multiple beam interference in Z-scan measurements on nanoscale films. Following this approach, the Z-scan observations were analyzed to determine the effective complex refractive index of the NP film at high irradiance. It appears that at high irradiance the NP film behaves as a metal, while at low irradiance it behaves as a low-loss dielectric. Thus, it is conjectured that, for high irradiance near the waist of the Z-scan laser beam, laser driven electron tunneling between NPs gives rise to metal-like optical behavior.

摘要

采用波长为1480 nm的飞秒(fs)激光脉冲的Z扫描技术,用于测量通过纳秒(ns)和飞秒脉冲激光沉积(PLD)在真空中制备的金(Au)纳米颗粒(NP)薄膜的非线性光学性质。在辐照度为1×10 Wm时,纳秒脉冲激光沉积薄膜表现出β = 4×10 mW的诱导吸收,以及n = -4.7×10 mW的负透镜效应,而飞秒脉冲激光沉积薄膜的这些值略小。这些n值意味着折射率实部出现了不符合物理规律的大幅变化,这表明在对纳米级薄膜进行Z扫描测量时,需要考虑菲涅耳系数的非线性变化和多光束干涉。按照这种方法,对Z扫描观测结果进行分析,以确定高辐照度下NP薄膜的有效复折射率。在高辐照度下,NP薄膜表现得像金属,而在低辐照度下,它表现得像低损耗电介质。因此,据推测,在Z扫描激光束腰附近的高辐照度下,纳米颗粒之间的激光驱动电子隧穿会导致类似金属的光学行为。

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