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Subwavelength imaging and detection using adjustable and movable droplet microlenses

查看全文 作  者:XIXI [1]CHEN;TIANLI [1]WU;ZHIYONG [1]GONG;YUCHAO [1]LI;YAO [1]ZHANG;BAOJUN [1]LI 高影响力作者 机构地区:[1]Institute of Nanophotonics,Jinan University,Guangzhou 511443,China高影响力机构 出  处:《Photonics Research》索引2020年第8卷第3期,共10页高影响力期刊 基  金:National Natural Science Foundation of China(11874183,61827822,61905092);Fundamental Research Funds for the Central Universities(21619321)。 摘  要:We developed adjustable and movable droplet microlenses consisting of a liquid with a high refractive index.The microlenses were prepared via ultrasonic shaking in deionized water,and the diameter of the microlenses ranged from 1 to 50μm.By stretching the microlenses,the focal length can be adjusted from 13 to 25μm.With the assistance of an optical tweezer,controllable assembly and movement of microlens arrays were also realized.The results showed that an imaging system combined with droplet microlenses could image 80 nm beads under white light illumination.Using the droplet microlenses,fluorescence emission at 550 nm from Cd Se@Zn S quantum dots was efficiently excited and collected.Moreover,Raman scattering signals from a silicon wafer were enhanced by^19 times.The presented droplet microlenses may offer new opportunities for flexible liquid devices in subwavelength imaging and detection. 关 键 词:STRETCHING ILLUMINATION EXCITED
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