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基于聚合物稳定蓝相的可见光谱范围内宽带空间可调光子带隙及激光器

Wide-Band Spatially Tunable Photonic Bandgap in Visible Spectral Range and Laser based on a Polymer Stabilized Blue Phase.

作者信息

Lin Jia-De, Wang Tsai-Yen, Mo Ting-Shan, Huang Shuan-Yu, Lee Chia-Rong

机构信息

National Cheng Kung University, Department of Photonics, Tainan, 701, Taiwan.

Kun Shan University of Technology, Department of Electro-Optical Engineering, Tainan, 710, Taiwan.

出版信息

Sci Rep. 2016 Jul 26;6:30407. doi: 10.1038/srep30407.

Abstract

This work successfully develops a largely-gradient-pitched polymer-stabilized blue phase (PSBP) photonic bandgap (PBG) device with a wide-band spatial tunability in nearly entire visible region within a wide blue phase (BP) temperature range including room temperature. The device is fabricated based on the reverse diffusion of two injected BP-monomer mixtures with a low and a high chiral concentrations and afterwards through UV-curing. This gradient-pitched PSBP can show a rainbow-like reflection appearance in which the peak wavelength of the PBG can be spatially tuned from the blue to the red regions at room temperature. The total tuning spectral range for the cell is as broad as 165 nm and covers almost the entire visible region. Based on the gradient-pitched PSBP, a spatially tunable laser is also demonstrated in this work. The temperature sensitivity of the lasing wavelength for the laser is negatively linear and approximately -0.26 nm/°C. The two devices have a great potential for use in applications of photonic devices and displays because of their multiple advantages, such as wide-band tunability, wide operated temperature range, high stability and reliability, no issue of hysteresis, no need of external controlling sources, and not slow tuning speed (mechanically).

摘要

这项工作成功开发出一种具有大梯度间距的聚合物稳定蓝相(PSBP)光子带隙(PBG)器件,在包括室温在内的宽蓝相(BP)温度范围内,在几乎整个可见光区域具有宽带空间可调性。该器件基于两种注入的具有低手性浓度和高手性浓度的BP单体混合物的反向扩散,然后通过紫外线固化制成。这种梯度间距的PSBP在室温下可以呈现出彩虹般的反射外观,其中PBG的峰值波长可以在空间上从蓝色区域调谐到红色区域。该单元的总调谐光谱范围宽达165纳米,几乎覆盖了整个可见光区域。基于梯度间距的PSBP,这项工作还展示了一种空间可调谐激光器。该激光器的激光波长温度敏感性呈负线性,约为-0.26纳米/°C。这两种器件因其具有宽带可调性、宽工作温度范围、高稳定性和可靠性、无滞后问题、无需外部控制源以及调谐速度不慢(机械方式)等多种优点,在光子器件和显示器应用中具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6402/4960656/0f7dbddd6f33/srep30407-f1.jpg

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