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Structural absorption by barbule microstructures of super black bird of paradise feathers

TLDR
Physical structure is known to contribute to the appearance of bird plumage through structural color and specular reflection, but a third mechanism, structural absorption, leads to low reflectance and super black color in birds of paradise feathers.
Abstract
Many studies have shown how pigments and internal nanostructures generate color in nature. External surface structures can also influence appearance, such as by causing multiple scattering of light (structural absorption) to produce a velvety, super black appearance. Here we show that feathers from five species of birds of paradise (Aves: Paradisaeidae) structurally absorb incident light to produce extremely low-reflectance, super black plumages. Directional reflectance of these feathers (0.05-0.31%) approaches that of man-made ultra-absorbent materials. SEM, nano-CT, and ray-tracing simulations show that super black feathers have titled arrays of highly modified barbules, which cause more multiple scattering, resulting in more structural absorption, than normal black feathers. Super black feathers have an extreme directional reflectance bias and appear darkest when viewed from the distal direction. We hypothesize that structurally absorbing, super black plumage evolved through sensory bias to enhance the perceived brilliance of adjacent color patches during courtship display.

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Control of MXenes' electronic properties through termination and intercalation.

TL;DR: Two-dimensional transition metal carbides and nitrides (MXenes) have emerged as highly conductive and stable materials, of promise for electronic applications, and in situ electric biasing and transmission electron microscopy are used to investigate the effect of surface termination and intercalation on electronic properties.
Journal ArticleDOI

Robust axion insulator and Chern insulator phases in a two-dimensional antiferromagnetic topological insulator

TL;DR: This work investigates the quantum transport of both bulk crystal and exfoliated MnBi 2 Te 4 flakes in a field-effect transistor geometry and observes a large longitudinal resistance and zero Hall plateau, which are characteristics of an axion insulator state.
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Non-Hermitian Physics

TL;DR: In this article, a review of non-Hermitian classical and quantum physics can be found, with an overview of how diverse classical systems, ranging from photonics, mechanics, electrical circuits, acoustics to active matter, can be used to simulate non-hermitian wave physics.
References
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Journal ArticleDOI

The Color of Light in Forests and Its Implications

TL;DR: The structure of forests leads to four major light habitats when the sun is not blocked by clouds: forest shade, woodland shade, small gaps, and large gaps, respectively, characterized by yellow—green, blue—gray, reddish, and "white" ambient light spectra, respectively.
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MicroCT for developmental biology: a versatile tool for high-contrast 3D imaging at histological resolutions.

TL;DR: Quantitative comparisons of images of chick embryos treated with different contrast agents show that three very simple methods using inorganic iodine and phosphotungstic acid produce overall contrast and differential tissue contrast for X‐ray imaging at least as high as that obtained with osmium.
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Comparison of Structure and Properties of Femtosecond and Nanosecond Laser-Structured Silicon

TL;DR: In this article, the optical properties, chemical composition, and crystallinity of silicon microstructures formed in the presence of SF6 by femtosecond laser irradiation and by nanosecond LIDAR irradiation were compared.
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Black silicon: fabrication methods, properties and solar energy applications

TL;DR: In this article, the use of black silicon (BSi) as an anti-reflection coating in solar cells is examined and appraised, based upon strategies towards higher efficiency renewable solar energy modules.
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Different colors reveal different information: how nutritional stress affects the expression of melanin- and structurally based ornamental plumage.

TL;DR: Melanin ornaments are less sensitive to nutritional conditions during molt and instead may reflect the hormonal status and/or competitive ability of males, whereas structural coloration appears to be an accurate signal of health and condition.
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