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全介质梯度光栅中的人工高双折射用于宽带太赫兹波。

Artificial high birefringence in all-dielectric gradient grating for broadband terahertz waves.

机构信息

Institute of Modern Optics, Nankai University, Key Laboratory of Optical Information Science and Technology, Ministry of Education, Tianjin 300071, China.

Tianjin Key Laboratory of Optoelectronic Sensor and Sensing Network Technology, Tianjin 300071, China.

出版信息

Sci Rep. 2016 Dec 9;6:38562. doi: 10.1038/srep38562.

Abstract

Subwavelength dielectric gratings are widely applied in the phase and polarization manipulation of light. However, the dispersion of the normal dielectric gratings is not flat while their birefringences are not enough in the THz regime. In this paper, we have fabricated two all-dielectric gratings with gradient grids in the THz regime, of which artificial birefringence is much larger than that of the equal-grid dielectric grating demonstrated by both experiments and simulations. The transmission and dispersion characteristics are also improved since the gradient grids break the periodicity of grating lattices as a chirp feature. From 0.6-1.4 THz, a broadband birefringence reaches 0.35 with a low dispersion and good linearity of phase shift, and the maximum phase shift is 1.4π. Furthermore, these gradient gratings are applied as half-wave plates and realize a linear polarization conversion with a conversion rate over 99%, also much higher than the equal-grid gratings. These gradient gratings show great advantages compared to the periodic gratings and provide a new way in the designing of artificial birefringence material.

摘要

亚波长介质光栅广泛应用于光的相位和偏振操纵。然而,普通介质光栅的色散不平坦,而在太赫兹波段的双折射不够大。在本文中,我们在太赫兹波段制造了两种具有梯度栅格的全介质光栅,其人工双折射比实验和模拟所证明的等栅介质光栅大得多。由于梯度栅格具有啁啾特征,破坏了光栅晶格的周期性,因此传输和色散特性也得到了改善。在 0.6-1.4 THz 范围内,宽带双折射达到 0.35,具有低色散和良好的相位延迟线性度,最大相位延迟为 1.4π。此外,这些梯度光栅可用作半波片,并实现了线性偏振转换,转换率超过 99%,也比等栅光栅高得多。与周期性光栅相比,这些梯度光栅具有很大的优势,为人工双折射材料的设计提供了一种新方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/efcc/5146933/c91a81ecc9ce/srep38562-f1.jpg

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