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Reflective Meta-Films with Anti-Damage Property via Field Distribution Manipulation

机译:通过现场分配操纵反射性荟膜,具有防损伤性能

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The reflective optical multi-films with high damage thresholds are widely used in intense-light systems. Metasurfaces, which can manipulate light peculiarly, give a new approach to achieve highly reflective films by a single-layer configuration. In this study, reflective metasurfaces, composed of silicon nanoholes, are numerically investigated to achieve high damage thresholds. These nanoholes can confine the strongest electric field into the air zone, and, subsequently, the in-air electric field does not interact directly with silicon, attenuating the optothermal effect that causes damage. Firstly, the geometrical dependencies of silicon nanoholes’ reflectance and field distribution are investigated. Then, the excitation states of electric/magnetic dipoles in nanostructures are analyzed to explain the electromagnetic mechanism. Furthermore, the reflection dependences of the nanostructures on wavelength and incident angle are investigated. Finally, for a typical reflective meta-film, some optothermal simulations are conducted, in which a maximum laser density of 0.27 W/μm2 can be handled. The study provides an approach to improve the laser damage threshold of reflective nanofilms, which can be exploited in many intense-light applications.
机译:具有高损伤阈值的反射光学多膜广泛用于激烈的光系统中。 Metasurfaces可以特殊地操纵光,通过单层配置提供一种新的方法来实现高反射膜。在该研究中,用硅纳米孔组成的反射元件在数量上研究以实现高损伤阈值。这些纳米孔可以将最强的电场限制在空气区域中,随后,内部电场不会直接与硅相互作用,衰减导致损坏的光热效果。首先,研究了硅纳米孔反射率和场分布的几何依赖性。然后,分析纳米结构中电/磁偶极孔的激发状态以解释电磁机制。此外,研究了纳米结构对波长和入射角的反射依赖性。最后,对于典型的反射元膜,进行一些光学热模拟,其中可以处理最大激光密度为0.27W /μm2。该研究提供了一种改善反射纳米丝的激光损伤阈值的方法,这可以在许多强烈的光应用中被利用。

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