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快速重离子辐照诱导二氧化硅中嵌入的锌纳米颗粒的光学双折射

Optical birefringence of Zn nanoparticles embedded in silica induced by swift heavy-ion irradiation.

作者信息

Amekura H, Okubo N, Ishikawa N

出版信息

Opt Express. 2014 Dec 1;22(24):29888-98. doi: 10.1364/OE.22.029888.

Abstract

Zn nanoparticles (NPs) embedded in a silica matrix subjected to irradiation with swift heavy ions of 200 MeV Xe¹⁴⁺ have been found to undergo shape elongation from spheres to prolate-spheroids while maintaining the major axes of the NPs in parallel alignment. The directionally-aligned Zn spheroids enable acquisition of optical properties, such as linear dichroism and birefringence. In this paper, the birefringence of the Zn spheroids was evaluated by the crossed-Nicols (XN) transmittance, where a sample was inserted between a pair of optical polarizers that were set in an orthogonal configuration. Linearly-polarized light aligned by the first polarizer was transformed to an elliptic polarization by the birefringence of the Zn spheroids. The existence of the birefringence was confirmed by the non-zero transmittance of the second polarizer in the orthogonal configuration. The sample irradiated with a fluence of 5.0 × 10¹³ ions/cm² exhibited a maximum XN transmittance of 2.1% at a photon energy of ~4 eV. The XN transmission was observed down to a fluence of 1.0 × 10¹² ions/cm², but reduced below the detection limit at a fluence of 1.0 × 10¹¹ ions/cm². The possible application of the elongated Zn NPs as a polarizer with nanometric thickness working in the near- and mid-ultraviolet region is discussed.

摘要

嵌入二氧化硅基质中的锌纳米颗粒(NPs),在用200 MeV的Xe¹⁴⁺快速重离子辐照时,被发现会从球形伸长为长椭球体,同时纳米颗粒的主轴保持平行排列。这种定向排列的锌椭球体能够获得光学性质,如线性二色性和双折射。在本文中,通过正交尼科耳(XN)透射率评估了锌椭球体的双折射,即将样品插入一对设置为正交配置的光学偏振器之间。由第一个偏振器排列的线偏振光通过锌椭球体的双折射转变为椭圆偏振光。通过第二个偏振器在正交配置下的非零透射率证实了双折射的存在。辐照通量为5.0×10¹³离子/cm²的样品在光子能量约为4 eV时表现出最大XN透射率为2.1%。XN透射率在辐照通量低至1.0×10¹²离子/cm²时仍可观察到,但在辐照通量为1.0×10¹¹离子/cm²时降低到检测限以下。本文还讨论了拉长的锌纳米颗粒作为在近紫外和中紫外区域工作的纳米厚度偏振器的可能应用。

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