Additively manufactured multi-spectral NIR-THz sensor systems
Additively manufactured multi-spectral NIR-THz sensor systems
批准号:
502254396
负责人:
Professor Dr. Sascha Preu
金额:
$0.0万
依托单位国家:
德国
项目类别:
Research Grants
财政年份:
--
资助国家:
德国
项目状态:
未结题
起止时间:
中文摘要
拟议的项目旨在开发一种附加制造的、具有低成本、一次性或可重复使用的传感器元件的多光谱传感器系统,用于光谱学和生命科学中的应用。紧凑型光子-太赫兹(THz;100 GHz-10 THz)共集成传感器将同步捕获近红外范围(~1550 nm;近红外)和太赫兹范围(0.1 THz-1.25 THz,电势扩展至2 THz)的光谱数据,同时仅使用一个近红外激光系统驱动传感器的两个部件。太赫兹系统将是一种零差光电合成装置。传感器系统将由附加制造的用于近红外和太赫兹范围的介质波导电路组成。实际的传感器元件以及光子主干都将由这样的波导结构和组件组成,如将在WP1中开发的分路器或输入和输出耦合光学元件。太赫兹波导材料将是TOPAS、聚乙烯、聚丙烯或高冲击聚苯乙烯。对于近红外领域的解放军,将使用高清玻璃或ABS。基材将是聚乙烯、石英或金属化的石英玻璃。WP2侧重于具有足够灵敏度的传感器元件。将针对三种不同的系统架构:架构I将针对低吸收率或中等吸收率的待测样品进行量身定制,如油。将实施谐振器结构。建筑II将专注于测试中具有高太赫兹吸收的样品。传感器将是一个微流控电池。第一号和第二号建筑的传感器元件将是一次性的。架构III将是一种可重复使用的传输、全内反射或基于反射的设置,在共平行的近红外和太赫兹波导的尖端集成了一个有源传感器元件。在WP3中,该系统将与主动结构(信号源和接收器)相结合,以开展基准应用程序。为了验证该系统的能力,我们将重点放在与生命科学相关的物质上,如油中的维生素、水中的糖以及更复杂的物质。将建立分析模型,以区分与生命科学有关的几种物质混合物。该项目开发的技术将在进一步的传感器技术和集成的近红外和太赫兹系统方面具有巨大的潜力。该项目将由达姆施塔特大学(Sascha Preu)太赫兹设备和系统实验室(Sascha Preu)和奥斯威斯特法伦-利普(Oliver Stübbe)合作实施,前者在太赫兹光谱学和介质太赫兹波导方面拥有丰富的经验,后者在光学元件的添加制造以及光学通信和传感器系统方面具有长期背景。
英文摘要
The proposed project aims for the development of an additively manufactured, multi-spectral sensor system with a low cost, disposable or reusable sensor element for applications in spectroscopy and life sciences. The compact, photonic-Tearhertz (THz; 100 GHz-10 THz) co-integrated sensor will synchronously capture spectroscopic data in the near infrared range (~1550 nm; NIR) and in the THz range (0.1 THz- 1.25 THz with potential extension towards 2 THz) whilst using only one NIR laser system driving both parts of the sensor. The THz system will be a homodyne photomixing setup. The sensor system will be composed of additively manufactured dielectric waveguide circuitry for both the near infrared as well as the Terahertz range. Both the actual sensor element as well as the photonic backbone will be composed of such waveguide structures and components like splitters or in- and outcoupling optics that will be developed in WP1. THz waveguide materials will be TOPAS, polyethylene, polypropylene or high impact polystyrene. For the NIR domain PLA, HD glass or ABS will be used. The substrate will be polyethylene, quartz or metallized quartz glass. WP2 focuses on the sensor elements with sufficient sensitivity. Three different system architectures are targeted: Architecture i will be tailored to samples under test with low or medium absorption, such as oils. Resonator structures will be implemented. Architecture ii will focus on samples under test with high THz absorption. The sensor will be a microfluidic cell. The sensor element of architecture i and ii will be disposable. Architecture iii will be a reusable transmission, total internal reflection, or reflection-based setup, with an active sensor element integrated at the tip of a co-parallel NIR and THz waveguide. In WP3, the system will be integrated with active structures (sources and receivers) in order to carry out benchmarking applications. To verify the capabilities of the system we focus on life-science-relevant substances such asvitamins in oils, sugars in water and also more complex substances. Analytical modelswill be implemented in order to discriminate several mixtures of lifescience-relevant substances. The technologies developed in this project will have large potential for further sensor technologies and integrated NIR & THz systems. The project will be carried out in a collaboration between the Terahertz Devices and Systems Laboratory of TU Darmstadt (Sascha Preu) with profound experience in THz spectroscopy and dielectric THz waveguides and the TH Ostwestfalen-Lippe (Oliver Stübbe) with a long-term background in additive manufacturing of optical components and in optical communication and sensor systems.
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会议论文
Ultrafast Detection of THz Radiation with Large Area Field Effect Transistors
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批准号:241750018
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项目类别:Research Grants
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资助金额:$0.0万
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财政年份:2013
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负责人:Professor Dr. Sascha Preu
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依托单位:
海外基金