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Modeling and design of a spiral-shaped Mach-Zehnder interferometric sensor for refractive index sensing of watery solutions

机译:用于水溶液折射率传感的螺旋形mach-Zehnder干涉传感器的建模与设计

摘要

The modeling and design of a spiral-shaped Mach-Zehnder Interferometric sensor (sMZI sensor) for refractive index sensing of watery solutions is presented. The goal of the running project is to realise a multi-sensing array by placing multiple sMZIs in series to form a sensing branch, and to place several sensing branches in parallel. In such an arrangment it is possible to use a single light source for several sensors. Each sensor will contain an electro-optical modulator, which makes it possible to separately interrogate and accurately read-out each sensor in the same sensing branch.One of the novelties in this project is the spiral-shaped layout of the MZI, which has several advantages: a long sensor window length can be placed in a compact sensor chip: within an area of 1 × 1 cm2 lengths of several tens of cm are feasible. Another advantage of the spiral shape is that if both MZI branches are identical (except for the sensor layer) the sensor should be very insensitive to fluctuations in temperature and even to temperature gradients across the chip. Beside robustness, the spiral shape also allows cascading of several sensors.A parametrised sMZI has been designed such that the position, slope, and curvature are continuous.The sensors can each be coated with e.g. a specific immunolayer to be able to detect changes in concentration of viri, bacteria or enzymes. In this project, technology is being developed for the immobilisation and photolithographical patterning of such immunolayers, which should result in a demonstrator to monitor the ripening process of cheese by measuring changes in the concentration of several different enzymes involved in this process.
机译:提出了一种螺旋形马赫曾德尔干涉式传感器(sMZI传感器)的模型和设计,该传感器用于检测水溶液的折射率。正在运行的项目的目标是通过串联放置多个sMZI形成一个传感分支,并并行放置多个传感分支来实现多传感阵列。在这种布置中,可以将单个光源用于多个传感器。每个传感器都将包含一个电光调制器,从而可以分别询问和准确读出同一传感分支中的每个传感器。该项目的新颖之处之一是MZI的螺旋形布局,其中有多个优点:可以在紧凑的传感器芯片中放置较长的传感器窗口长度:在1×1 cm2的区域内,几十厘米的长度是可行的。螺旋形的另一个优点是,如果两个MZI分支都相同(除了传感器层),则传感器应该对温度波动甚至整个芯片的温度梯度非常不敏感。除了坚固性之外,螺旋形状还允许级联多个传感器。已设计参数化的sMZI,使得位置,斜率和曲率是连续的。能够检测病毒,细菌或酶浓度变化的特异性免疫层。在该项目中,正在开发用于固定和免疫图案化此类免疫层的技术,这将导致演示者通过测量此过程中涉及的几种不同酶的浓度变化来监测奶酪的成熟过程。

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