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用于在基板两侧实现对准微光学元件的免调整双面3D直接激光写入。

Adjustment-free two-sided 3D direct laser writing for aligned micro-optics on both substrate sides.

作者信息

Schmid Michael, Thiele Simon, Herkommer Alois, Giessen Harald

出版信息

Opt Lett. 2023 Jan 1;48(1):131-134. doi: 10.1364/OL.476448.

Abstract

3D direct laser writing is a powerful and widely used tool to create complex micro-optics. The fabrication method offers two different writing modes. During the immersion mode, an immersion medium is applied between the objective and the substrate while the photoresist is exposed on its back side. Alternatively, when using the dip-in mode, the objective is in direct contact with the photoresist and the structure is fabricated on the objective facing side of the substrate. In this Letter, we demonstrate the combination of dip-in and photoresist immersion printing, by using the photoresist itself as immersion medium. This way, two parts of a doublet objective can be fabricated on the front and back sides of a substrate, using it as a spacer with a lateral registration below 1 µm and without the need of additional alignment. This approach also enables the alignment free combination of different photoresists on the back and front sides. We use this benefit by printing a black aperture on the back of the substrate, while the objective lens is printed on the front.

摘要

三维直接激光写入是一种功能强大且应用广泛的工具,用于制造复杂的微光学器件。这种制造方法提供两种不同的写入模式。在浸没模式下,在物镜和衬底之间施加浸没介质,同时光刻胶在其背面曝光。或者,在使用浸入模式时,物镜直接与光刻胶接触,并且在衬底面向物镜的一侧制造结构。在本信函中,我们通过使用光刻胶本身作为浸没介质,展示了浸入模式和光刻胶浸没印刷的结合。通过这种方式,可以在衬底的正面和背面制造双合透镜物镜的两个部分,将衬底用作间隔物,横向对准精度低于1微米,且无需额外对准。这种方法还能够在正面和背面自由对准不同的光刻胶。我们利用这一优势,在衬底背面印刷一个黑色光阑,同时在正面印刷物镜。

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