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精确的和无衍射限制的波导到自由空间聚焦光栅。

Precise and diffraction-limited waveguide-to-free-space focusing gratings.

机构信息

Department of Electrical Engineering and Computer Science and Research Laboratory of Electronics, Massachusetts Institute of Technology, Cambridge, MA, 02139, USA.

出版信息

Sci Rep. 2017 May 17;7(1):2019. doi: 10.1038/s41598-017-02169-2.

Abstract

We present the design and characterization of waveguide grating devices that couple visible-wavelength light at λ = 674 nm from single-mode, high index-contrast dielectric waveguides to free-space beams forming micron-scale diffraction-limited spots a designed distance and angle from the grating. With a view to application in spatially-selective optical addressing, and in contrast to previous work on similar devices, deviations from the main Gaussian lobe up to 25 microns from the focus and down to the 5 × 10 level in relative intensity are characterized as well; we show that along one dimension the intensity of these weak sidelobes approaches the limit imposed by diffraction from the finite field extent in the grating region. Additionally, we characterize the polarization purity in the focal region, observing at the center of the focus a low impurity <3 × 10 in relative intensity. Our approach allows quick, intuitive design of devices with such performance, which may be applied in trapped-ion quantum information processing and generally in any systems requiring optical routing to or from objects 10 s-100 s of microns from a chip surface, but benefitting from the parallelism and density of planar-fabricated dielectric integrated optics.

摘要

我们提出了波导光栅器件的设计和特性,该器件将 λ=674nm 的可见光波长从单模、高折射率差介质波导耦合到自由空间光束,在光栅的设计距离和角度处形成微米级衍射极限光斑。为了在空间选择性光学寻址中的应用,与类似器件的先前工作相比,我们还对离焦 25 微米范围内和相对强度为 5×10 级别的主高斯瓣以外的偏离进行了表征;我们表明,在一个维度上,这些弱旁瓣的强度接近由光栅区域中有限场范围的衍射所施加的限制。此外,我们在焦区表征了偏振纯度,在焦点中心观察到相对强度低至 3×10 的低杂质。我们的方法允许快速、直观地设计具有此类性能的器件,这些器件可应用于囚禁离子量子信息处理以及一般需要从芯片表面 10s-100s 微米的物体进行光学路由的任何系统,但受益于平面制造介电集成光学的并行性和密度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c73b/5435719/49f6ec6a9b26/41598_2017_2169_Fig1_HTML.jpg

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