论文标题
集成光子学和自由空间之间的多功能接口
Multi-functional interface between integrated photonics and free space
论文作者
论文摘要
光子集成电路和自由空间元访问的组合具有取消符合技术结的能力,该技术结构需要高级光操作,因为它们可以连接和塑造电磁波。大规模访问和组件互换性的需求对于快速原型光学系统至关重要。这种能力代表了化合物光子平台的制造和对齐方式的功能挑战。在这里,我们报告了一个多功能界面,该界面展示了光子积分电路的柔性且可互换组合的功能,以在780 nm的波长下具有不同设计的自由空间耦合芯片。我们表明,如果没有事先精确表征自由空间输入,则可以实现设计的光学功能的鲁棒性和忠诚度,也可以在光子积分芯片和元视频芯片之间进行精确表征。尽管输入高斯椭圆形变形高达35%,并且成分的未对准高达20微米,但数值孔径为0.15的衍射有限斑还是达到了数值0.15的衍射斑点。还使用此平台据报道,与地面真相相比,峰值信号噪声比为10的全息图显示,这使得该作品是使用不同的衍射光学功能将光子集成模式塑造成自由空间的第一个接口。
The combination of photonic integrated circuits and free-space meta-optics has the ability to unclasp technological knots that require advanced light manipulation due their conjoined ability to guide and shape electromagnetic waves. The need for large scale access and component interchangeability is essential for rapid prototyping of optical systems. Such capability represents a functional challenge in terms of fabrication and alignment of compound photonic platform. Here, we report a multi-functional interface that demonstrates the capabilities of a flexible and interchangeable combination of a photonic integrated circuit to a free-space coupling chip with different designs of low-loss meta-optics at a wavelength of 780 nm. We show that robustness and fidelity of the designed optical functions can be achieved without prior precise characterization of the free-space input nor stringent alignment between the photonic integrated chip and the meta-optics chip. A diffraction limited spot of approximately 3 micron for a hyperboloid metalens of numerical aperture 0.15 was achieved despite an input Gaussian elliptical deformation of up to 35% and misalignments of the components of up to 20 micron. A holographic display with a peak signal-to-noise ratio of more than 10 compared to its ground truth is also reported using this platform making this work the first interface to shape photonic integrated modes into free space using different diffractive optical functions.