Boden Stuart A, Asadollahbaik Asa, Rutt Harvey N, Bagnall Darren M
Electronics and Computer Science, University of Southampton, Highfield, Southampton, Hampshire, United Kingdom.
Scanning. 2012 Mar-Apr;34(2):107-20. doi: 10.1002/sca.20267. Epub 2011 Jul 27.
In this report, helium ion microscopy (HIM) is used to study the micro and nanostructures responsible for structural color in the wings of two species of Lepidotera from the Papilionidae family: Papilio ulysses (Blue Mountain Butterfly) and Parides sesostris (Emerald-patched Cattleheart). Electronic charging of uncoated scales from the wings of these butterflies, due to the incident ion beam, is successfully neutralized, leading to images displaying a large depth-of-field and a high level of surface detail, which would normally be obscured by traditional coating methods used for scanning electron microscopy (SEM). The images are compared with those from variable pressure SEM, demonstrating the superiority of HIM at high magnifications. In addition, the large depth-of-field capabilities of HIM are exploited through the creation of stereo pairs that allows the exploration of the third dimension. Furthermore, the extraction of quantitative height information which matches well with cross-sectional transmission electron microscopy measurements from the literature is demonstrated.
在本报告中,氦离子显微镜(HIM)被用于研究凤蝶科两种鳞翅目昆虫翅膀上负责结构色的微观和纳米结构:美凤蝶(蓝山蝴蝶)和红珠凤蝶(翠斑麝凤蝶)。由于入射离子束,这些蝴蝶翅膀上未镀膜鳞片的电子充电被成功中和,从而得到的图像具有大景深和高表面细节水平,而这些通常会被扫描电子显微镜(SEM)使用的传统镀膜方法所掩盖。将这些图像与可变压力SEM的图像进行比较,证明了HIM在高放大倍数下的优越性。此外,通过创建立体对利用了HIM的大景深能力,从而能够探索第三维度。此外,还展示了提取的定量高度信息,该信息与文献中的横截面透射电子显微镜测量结果匹配良好。