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Experimental studies on output, spatial, and spectralcharacteristics of a microdroplet dye laser containing Intralipid as ahighly scattering medium

机译:含脂质内高散射介质的微滴染料激光器的输出,空间和光谱特性的实验研究

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摘要

Lasing characteristics of Rhodamine 6G dye-doped microdroplets containing highly scattering fat emulsion Intralipid-10% are studied experimentally. Noteworthy findings are that well-defined lasing threshold can be observed and one order or more magnitude enhancement of emission intensity with suitable (optimum) conditions of the Intralipid mixing ratio, in comparison with original neat-dye lasing microdroplets. We present and discuss the measured results of input-output intensities for different dye concentrations and dye-Intralipid mixing ratios in this high-gain laser dye-soft scatterer system and microscope images of spatial distribution of light emission from both the microdroplets containing neat-dye and dye-Intralipid mixture. It was found that almost no-lasing neat-dye microdroplets, which have either much higher or much lower dye concentration, can achieve lasing by substituting suitably certain amounts of the Intralipid, causing multiple light scattering. Spectral measurements of lasing outputs from the Rhodamine 6G dye-Intralipid microdroplets show the tendency of the disappearance of the well-known mode structures, owing to the morphology-dependent resonances of this microspherical cavity inherent to the neat-dye microdroplets. It is our belief that the present results make this novel method of dye-Intralipid microsystem very attractive for a variety of future applications, including diagnostic tools for highly sensitive detection and identification of small quantity objects and species embedded or hidden in highly scattering media, such as biological tissues and cellular structures.
机译:实验研究了若丹明6G染料掺杂微滴含高散射脂肪乳Intralipid-10%的激光发射特性。值得注意的发现是,与原始的纯净染料激光微滴相比,在适当的(最佳)脂质内混合比条件下,可以观察到明确的激光阈值,并且发射强度提高一个或多个数量级。我们介绍并讨论了在这种高增益激光染料-软散射器系统中不同染料浓度和染料-脂质内混合比的输入-输出强度的测量结果,以及包含纯染料的微滴的发光空间分布的显微镜图像和染料-脂质混合物。发现几乎无激光的纯染料微滴,其具有高得多的染料浓度或低得多的染料浓度,可以通过适当地代替一定量的内脂质而引起激光发射,引起多次光散射。罗丹明6G染料-脂质内微滴的激光输出的光谱测量结果表明,由于这种纯球形微滴固有的微球腔的形态相关共振,众所周知的模式结构消失的趋势。我们相信,目前的结果使这种新颖的染料-脂质内微系统方法在各种未来应用中非常有吸引力,包括用于高度敏感地检测和识别嵌入或隐藏在高度散射介质中的少量物体和物种的诊断工具,例如作为生物组织和细胞结构。

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