论文标题
用于空间过滤的纳米结构多层涂料
Nanostructured Multilayer Coatings for Spatial Filtering
论文作者
论文摘要
空间过滤是提高激光束空间质量的重要机制。通常,将镜片的镜片的共聚焦排列用于焦平面中的腔内空间滤波。这种传统的过滤需要访问远场域。然而,在微叠层中,由于微谐波中缺乏空间无法进入远场,因此不可能进行常规过滤。因此,必须进行更紧凑,更有效的空间滤波的新颖概念。在这项研究中,我们通过纳米结构的多层涂层提出并证明了一种概念上新型的空间滤波机制 - 沿纵向和横向横向横向的2D光子晶体结构,具有周期性指数调制到梁传播。该结构建立在纳米调节的底物上,以提供横向周期性。物理蒸气沉积用于在纵向方向提供自我重复调制。我们在实验上证明了5微米厚的光子多值结构结构由纳米结构的多层高和低指数材料组成,可在2°低角度传递带的近红外频率下提供空间滤波。所提出的光子结构可以视为微型塑料中腔内空间滤波的理想成分。
Spatial filtering is an important mechanism to improve the spatial quality of laser beams. Typically, a confocal arrangement of lenses with a diaphragm in the focal plane is used for intracavity spatial filtering. Such conventional filtering requires access to the far-field domain. In microlasers, however, conventional filtering is impossible due to the lack of space in micro-resonators to access the far-field. Therefore, a novel concept for more compact and efficient spatial filtering is necessary. In this study, we propose and demonstrate a conceptually novel mechanism of spatial filtering in the near-field domain, by a nanostructured multilayer coating - a 2D photonic crystal structure with a periodic index modulation along the longitudinal and transverse direction to the beam propagation. The structure is built on a nano-modulated substrate, to provide the transverse periodicity. The physical vapor deposition is used to provide self-repeating modulation in the longitudinal direction. We experimentally demonstrate a 5 micron thick photonic multilayer structure composed of nanostructured multiple layers of alternating high- and low-index materials providing spatial filtering in the near-infrared frequencies with 2° low angle passband. The proposed photonic structure can be considered as an ideal component for intracavity spatial filtering in microlasers.