Suppr超能文献

注入若丹明6G的雄性印度孔雀尾羽激光发射的光谱指纹。

Spectral fingerprint of laser emission from rhodamine 6g infused male Indian Peafowl tail feathers.

作者信息

Fiorito Anthony, Sheffield D Ryan, Liu Hengzhou, Nasirzadeh Orang Erfan, Dawson Nathan J

机构信息

Physics, Florida Polytechnic University, 4700 Research Way, Lakeland, FL, 33805, USA.

Physics, Youngstown State University, 1 Tressel Way, Youngstown, OH, 44555, USA.

出版信息

Sci Rep. 2025 Jul 1;15(1):20938. doi: 10.1038/s41598-025-04039-8.

Abstract

The light-emissive properties of dye-infused barbules from Indian Peafowl (Pavo cristatus) tail feathers is investigated at high intensities pumped at [Formula: see text]nm. The dye-infused barbules were prepared by repeatedly wetting the eyespot with dye solution and allowing it to dry. While wet, and after wet/dry cycling, across multiple parts of the same feather as well as across different feather samples, a highly conserved set of laser wavelengths was observed. While most feedback mechanisms in biological materials have been attributed to random lasers, the results presented in this article are inconsistent with this mechanism, and they suggest a critical structure inside the barbules which persists through different color regions of the eyespot. The laser thresholds were found to be below the random laser threshold for these materials, and the laser emission indicates that feedback structures with small gain volumes can be measured using this technique. This study also illustrates how persistent small-scale structures in biological materials act as low-quality resonators whose dispersion imprints on subsequent laser emission.

摘要

研究了印度孔雀(孔雀雉)尾羽中注入染料的羽小枝在波长为[公式:见正文]nm的高强度泵浦下的发光特性。通过用染料溶液反复湿润眼斑并使其干燥来制备注入染料的羽小枝。在湿润时以及经过湿/干循环后,在同一根羽毛的多个部位以及不同的羽毛样本中,观察到了一组高度保守的激光波长。虽然生物材料中的大多数反馈机制都归因于随机激光,但本文给出的结果与这种机制不一致,它们表明羽小枝内部存在一种关键结构,这种结构在眼斑的不同颜色区域中持续存在。发现这些材料的激光阈值低于随机激光阈值,并且激光发射表明可以使用该技术测量具有小增益体积的反馈结构。这项研究还说明了生物材料中持久的小尺度结构如何作为低质量谐振器,其色散会印刻在随后的激光发射上。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/80fb/12216718/0fdab62c1110/41598_2025_4039_Fig1_HTML.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验