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Printable photonic crystals with high refractive index for applications in visible light

机译:具有高折射率的可印刷光子晶体,适用于可见光

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摘要

Nanoimprint lithography (NIL) of functional high-refractive index materials has proved to be a powerful candidate for the inexpensive manufacturing of high-resolution photonic devices. In this paper, we demonstrate the fabrication of printable photonic crystals (PhCs) with high refractive index working in the visible wavelengths. The PhCs are replicated on a titanium dioxide-based high-refractive index hybrid material by reverse NIL with almost zero shrinkage and high-fidelity reproducibility between mold and printed devices. The optical responses of the imprinted PhCs compare very well with those fabricated by conventional nanofabrication methods. This study opens the road for a low-cost manufacturing of PhCs and other nanophotonic devices for applications in visible light.
机译:功能高折射率材料的纳米压印光刻(NIL)已被证明是廉价制造高分辨率光子器件的有力候选者。在本文中,我们演示了在可见光波长下具有高折射率的可印刷光子晶体(PhC)的制造。 PhC通过反向NIL在基于二氧化钛的高折射率混合材料上复制,具有几乎为零的收缩率,并且在模具和印刷设备之间具有高保真再现性。压印的PhC的光学响应与通过常规纳米制造方法制造的光学响应非常好。这项研究为低成本制造PhC和其他用于可见光的纳米光子器件开辟了道路。

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