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Integrated optical circuits in fiber cladding by tightly focused femtosecond laser writing

机译:通过紧密聚焦的飞秒激光写入纤维包层中的集成光电路

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Femtosecond laser direct writing in glass materials represents a simple single-step approach to generate three-dimensional (3D) optical circuits that cannot be constructed with traditional fabrication techniques. In this paper, we present an attractive extension of such femtosecond laser processing to the writing of optical circuits directly inside the cladding of single-mode optical fiber. To enable the formation of strongly guided and undistorted waveguide modes within the small cylindrical fused silica volume (125 μm diameter), frequency-doubled (λ = 522 nm) Ytterbium fiber-amplified femtosecond laser light at high repetition rate (500 kHz) was tightly focused with a high 1.25 numerical aperture (NA) oil immersion lens. In this way, low-loss waveguides could be arbitrarily located in various cladding positions without generating ablation damage. Basic components such as directional couplers were demonstrated that present a new means for dense integration of optical elements that couple with the nearby fiber core. Such 3D all-fiber optical circuits represent practical tools to bypass tedious assembly and packaging steps such as fiber pigtailing with planar lightwave components. This formation of optical circuits directly within the cladding of optical fiber opens new prospects for manufacturing compact and functional optical and optofluidic microsystems for Telecom, sensing and lab-on-a fiber applications.
机译:Femtosecond激光直接写入玻璃材料中的简单单步方法来产生不能用传统制造技术构造的三维(3D)光学电路。在本文中,我们在单模光纤的包层内部呈现了这种飞秒激光加工的吸引力延伸,以直接在光学电路内写入光学电路。为了使得在小圆柱形熔融二氧化硅体积(125μm直径)内形成强烈的导向和未变形的波导模式,频率加倍(λ= 522nm)镱纤维扩增的飞秒激光(500 kHz)紧密专注于高1.25数值孔径(NA)浸没镜头。以这种方式,低损耗波导可以任意位于各种包层位置而不产生消融损坏。证明了诸如定向耦合器的基本组件,其提出了一种具有与附近纤维芯的光学元件的密集集成的新方法。这种3D全光纤光电路代表旁路繁琐的组装和包装步骤,例如具有平面光文部件的纤维钉的实用工具。这种光学电路的形成直接在光纤的包层内开辟了用于制造紧凑型和功能性光学和晶体流体系统的新前景,用于电信,传感和实验室纤维应用。

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