论文标题

基于光子整合电路

Multi-channel swept source optical coherence tomography concept based on photonic integrated circuits

论文作者

Nevlacsil, Stefan, Muellner, Paul, Maese-Novo, Alejandro, Eggeling, Moritz, Vogelbacher, Florian, Sagmeister, Martin, Kraft, Jochen, Rank, Elisabet, Drexler, Wolfgang, Hainberger, Rainer

论文摘要

在本文中,我们提出了基于光子集成电路(PICS)的多渠道扫描源光学相干断层扫描(OCT)系统的新颖概念。该概念的核心是一种低损耗的偏振路径路由方法,与先前显示的基于PIC的OCT系统相比,多余的损失较低,从而促进了测量单元的并行化。作为低损耗路径路由的概念证明,实施了基于氮化硅PIC的单渠道扫描源源在840 nm处运行的单通道源OCT系统,并用于获取人类视网膜的体内盘中图。 PIC的制造是通过与CMOS兼容的等离子体增强化学蒸气沉积进行的,以允许将来与光电二极管和读出的电子设备进行整体整合。使用实现的光子构建块的结果进行的性能分析显示,与理想的无损耗单通道系统相比,多渠道系统的采集速度的潜在提高了,具有相同的信噪比。

In this paper, we present a novel concept for a multi-channel swept source optical coherence tomography (OCT) system based on photonic integrated circuits (PICs). At the core of this concept is a low-loss polarization dependent path routing approach allowing for lower excess loss compared to previously shown PIC-based OCT systems, facilitating a parallelization of measurement units. As a proof of concept for the low-loss path routing, a silicon nitride PIC-based single-channel swept source OCT system operating at 840 nm was implemented and used to acquire in-vivo tomograms of a human retina. The fabrication of the PIC was done via CMOS-compatible plasma-enhanced chemical vapor deposition to allow future monolithic co-integration with photodiodes and read-out electronics. A performance analysis using the results of the implemented photonic building blocks shows a potential tenfold increase of the acquisition speed for a multi-channel system compared to an ideal lossless single-channel system with the same signal-to-noise ratio.

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