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Self-assembled tunable photonic hyper-crystals

机译:自组装可调谐光子超晶体

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We demonstrate a novel artificial optical material, the "photonic hyper-crystal", which combines the most interesting features of hyperbolic metamaterials and photonic crystals. Similar to hyperbolic metamaterials, photonic hyper-crystals exhibit broadband divergence in their photonic density of states due to the lack of usual diffraction limit on the photon wave vector. On the other hand, similar to photonic crystals, hyperbolic dispersion law of extraordinary photons is modulated by forbidden gaps near the boundaries of photonic Brillouin zones. Three dimensional self-assembly of photonic hyper-crystals has been achieved by application of external magnetic field to a cobalt nanoparticle-based ferrofluid. Unique spectral properties of photonic hyper-crystals lead to extreme sensitivity of the material to monolayer coatings of cobalt nanoparticles, which should find numerous applications in biological and chemical sensing.
机译:我们展示了一种新型的人造光学材料“光子超晶体”,它结合了双曲线超材料和光子晶体的最有趣特征。与双曲线超材料相似,由于缺乏对光子波矢的通常衍射极限,光子超晶体在其光子态密度中显示出宽带发散。另一方面,类似于光子晶体,非凡光子的双曲弥散规律由光子布里渊区边界附近的禁隙调节。通过对钴纳米粒子基铁磁流体施加外部磁场,实现了光子超晶体的三维自组装。光子超晶体的独特光谱特性导致该材料对钴纳米颗粒的单层涂层具有极高的敏感性,这将在生物和化学传感中找到许多应用。

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