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Waveguide nanophotonics comprising a planar structure of the optical coupling with an optical fiber

机译:波导纳米光子,包括与光纤光学耦合的平面结构

摘要

The nanophotonic monomode planar waveguide comprises an optical core (16), an optical cladding (18, 20) covering the core, a structure for coupling the core of waveguide with a core of monomode optical fiber, and a prism (40) that includes first and second flat sides and is arranged on the optical cladding. The coupling structure comprises an adjustment element including a progressive widening of the core of waveguide of which an end is adapted with the core of the optical fiber through a wider region, and a light transmission element that is optically connected with the wider region. The nanophotonic monomode planar waveguide comprises an optical core (16), an optical cladding (18, 20) covering the core, a structure for coupling the core of waveguide with a core of monomode optical fiber, and a prism (40) that includes first and second flat sides and is arranged on the optical cladding. The coupling structure comprises an adjustment element including a progressive widening of the core of waveguide of which an end is adapted with the core of the optical fiber through a wider region, and a light transmission element that is optically connected with the wider region and defines a flat coupling surface (34) through which the light is transmitted to the optical fiber. A rate of optical coupling through the coupling surface is the maximum for a predetermined coupling angle of light with respect to the coupling surface, when the surface is contacted with air. The first flat side is arranged on or in contact with the coupling surface, and the second flat side is designed to optically cooperate with the optical fiber, where the sides are separated from each other at an angle whose value is equal to an angle of refraction (theta p) in the prism. The light transmission element comprises periodic slits formed on a side of the wider region. The second side of the prism inscribes a terminal section of the optical fiber with which the second side of the prism is designed to be optically connected. The prism and a portion of the optical cladding have same refractive index and are made of same material such as silicon. An independent claim is included for an optical coupling system.
机译:纳米光子单模平面波导包括光芯(16),覆盖芯的光学包层(18、20),用于将波导的芯与单模光纤的芯耦合的结构,以及包括第一光纤的棱镜(40)。第二平面和第二平面布置在光学覆层上。耦合结构包括:调节元件,其包括逐渐扩大的波导的芯,其末端与光纤的芯通过较宽的区域相适应;以及光传输元件,其与较宽的区域光学连接。纳米光子单模平面波导包括光芯(16),覆盖芯的光学包层(18、20),用于将波导的芯与单模光纤的芯耦合的结构,以及包括第一光纤的棱镜(40)。第二平面和第二平面布置在光学覆层上。该耦合结构包括:调节元件,其包括逐渐扩大的波导芯,其端部与光纤的芯穿过较宽的区域相适应;以及光传输元件,其与较宽的区域光学连接并限定平面耦合表面(34),光通过该耦合表面传输到光纤。当表面与空气接触时,相对于耦合表面的预定耦合角,通过耦合表面的光耦合速率最大。第一平坦侧被布置在耦合表面上或与耦合表面接触,并且第二平坦侧被设计为与光纤光学协作,其中,这些侧以值等于折射角的角度彼此分开。 (θp)在棱镜中。透光元件包括形成在较宽区域的一侧上的周期性狭缝。棱镜的第二侧内接光纤的末端部分,棱镜的第二侧被设计成与之光学连接。棱镜和光学覆层的一部分具有相同的折射率,并且由诸如硅的相同材料制成。光耦合系统包括独立权利要求。

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