Author Affiliations
Abstract
State Key Laboratory on Integrated Optoelectronics, College of Electronic Science and Engineering, Jilin University, Changchun 130012, China
Based on natural protein materials, a series of lenses with different heights and focal lengths were assembled on glass substrates by femtosecond laser non-contact, masking, and cold processing. This lens array itself possesses unique and characteristic optical performance in three-dimensional parallel imaging and bending imaging. What is more profound is that by using equilibrium swelling of protein-hydrogel, once the lens array was placed in a liquid environment, with the change of ion concentration (e.g., pH), the refractive index and curvature of the protein-hydrogel would change, which leads to the flex of the focal plane of the lens, finally realizing the dynamical tunability of a protein microlens. These smart stress devices may have great potential in optical biosensing and microfluidic chip integration fields.
170.1420 Biology 230.3990 Micro-optical devices 
Chinese Optics Letters
2019, 17(6): 061702
作者单位
摘要
吉林大学电子科学与工程学院集成光电子国家重点实验室, 吉林 长春 130012
利用飞秒激光大气成丝高强激光诱导荧光非线性光谱对碘单质升华过程进行了研究。研究结果发现飞秒光丝可诱导升华到空气中的碘分子产生清晰特征荧光谱。通过监测碘分子在341.6 nm(D→X1Σ+g跃迁)处的荧光谱线, 利用时间分辨测量方法观察到碘分子荧光强度随着加热温度以及测量位置与固态碘样品距离的变化而明显变化, 展示了光丝诱导荧光光谱技术应用于物态变化规律探索的可行性。
光谱学 飞秒激光 光丝 碘升华 诱导荧光 特征光谱 
中国激光
2017, 44(4): 0411001

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