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Geometrical Parameterization of Bowtie Terahertz Receiver Antenna Connected with Conductor Bar as Bolometer

机译:与导体杆连接的Bowtie Terahtz接收器天线的几何参数化为大计

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Terahertz (THz) imaging technology has rapidly developed in recent years. Its significant advantages over old imaging technologies such as X-Ray and microwave enables it for future imaging technology. THz imaging offers promising applications in the field of security and medical, such as concealed weapon scanner and cancer detectors. A THz wave detector as one of the main elements in THz technology is necessary to absorb energy radiated from the source. The impedance parameter is a parameter that should be in a matching condition between the receiver antenna and its connected transmission line or another component. In this paper, we study an antenna-coupled bolometer design as a detector of 1 THz radiation wave. The combination of a bolometer and an antenna is expected to provide a THz wave sensor in room temperature. A bowtie antenna structure is applied to achieve 1 THz frequency radiation to obtain broad bandwidth. The surface current parameter is considered to represent energy transfer and collection in the bolometer. From the simulation results, the surface current in the bolometer part is affected by its dimension. The surface current in the bolometer has its peak value at the boundary between the antenna and the bolometer. This condition is due to mismatching condition between the two components. Therefore, the impedance should be in matching condition between the bolometer and bowtie antenna to obtain sufficient energy transferred into the bolometer. Thus, the bolometer design should meet the required impedance matching. Further study on different conductivity of different materials is also necessary to obtain desired bolometer impedance.
机译:近年来,太赫特茨(Thz)成像技术迅速发展。它与X射线和微波等旧成像技术相比它具有显着的优势,使其能够为未来的成像技术。 THZ成像在安全和医疗领域提供了有希望的应用,如隐藏的武器扫描仪和癌症探测器。作为THz技术中的主要元件之一的Thz波检测器是吸收从源辐射的能量所必需的。阻抗参数是应该处于接收器天线及其连接的传输线或其他组件之间的匹配条件的参数。在本文中,我们研究了天线耦合的辐射计设计作为1 THz辐射波的检测器。预计钻光仪和天线的组合将在室温下提供THz波传感器。 Powtie天线结构用于实现1 ZHz频率辐射以获得宽带宽。表面电流参数被认为是表示钻孔计中的能量转移和收集。从仿真结果,钻孔计部分的表面电流受其尺寸的影响。钻头计中的表面电流在天线和鼓声机之间的边界处具有其峰值。这种情况是由于两个组件之间的不匹配状态。因此,阻抗应在测光仪和弓形天线之间的匹配条件中,以获得足够的能量转移到钻镜中。因此,鼓声机设计应符合所需的阻抗匹配。进一步研究不同材料的不同电导率,以获得所需的弓辐射计阻抗。

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