<i>Anoplophora graafi</i> longhorn beetle coloration is due to disordered diamond-like packed spheres.

Djeghdi, Kenza; Schumacher, Cédric; Bauernfeind, Viola; Gunkel, Ilja; Wilts, Bodo D; Steiner, Ullrich · Soft Matter · 2024

basic_science · Level V

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Abstract

While artificial photonic materials are typically highly ordered, photonic structures in many species of birds and insects do not possess a long-range order. Studying their order-disorder interplay sheds light on the origin of the photonic band gap. Here, we investigated the scale morphology of the <i>Anoplophora graafi</i> longhorn beetle. Combining small-angle X-ray scattering and slice-and-view FIB-SEM tomography with molecular dynamics and optical simulations, we characterised the chitin sphere assemblies within blue and green <i>A. graafi</i> scales. The low volume fraction of spheres and the number of their nearest neighbours are incompatible with any known close-packed sphere morphology. A short-range diamond lattice with long-range disorder best describes the sphere assembly, which will inspire the development of new colloid-based photonic materials.

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