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High-T_c superconducting microbolometer for terahertz applications

机译:太赫兹应用的高T_c超导微测辐射热计

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摘要

Superconducting hot electron bolometer mixers are now a competitive alternative to Schottky diode mixers in the terahertz frequency range because of their ultra wideband (from millimeter waves to visible light), high conversion gain, and low intrinsic noise level. High Tc superconductor materials can be used to make hot electron bolometers and present some advantage in term of operating temperature and cooling. In this paper, we present first a model for the study of superconducting hot electron bolometers responsivity in direct detection mode, in order to establish a firm basis for the design of future THz mixers. Secondly, an original process to realize YBaCuO hot electron bolometer mixers will be described. Submicron YBaCuO superconducting structures are expitaxially sputter deposited on MgO substrates and patterned by using electron beam lithography in combination with optical lithography. Metal masks achieved by electron beam lithography are insuring a good bridge definition and protection during ion etching. Finally, detection experiments are being performed with a laser at 850 nm wavelength, in homodyne mode in order to prove the feasibility and potential performances of these devices.
机译:由于其超宽带(从毫米波到可见光),高转换增益和低固有噪声水平,超导热电子辐射热测量混频器现在已成为太赫兹频率范围内肖特基二极管混频器的竞争替代品。高Tc超导体材料可用于制造热电子辐射热计,并在工作温度和冷却方面具有一定优势。在本文中,我们首先提出一种用于在直接检测模式下研究超导热电子辐射热计响应度的模型,以便为将来的THz混频器设计奠定坚实的基础。其次,将描述实现YBaCuO热电子辐射热计混合器的原始过程。亚微米YBaCuO超导结构被轴向溅射沉积在MgO基板上,并通过电子束光刻与光学光刻相结合的方式进行图案化。通过电子束光刻技术获得的金属掩模可确保离子蚀刻过程中良好的电桥清晰度和保护。最后,以零差模式用波长为850 nm的激光进行检测实验,以证明这些设备的可行性和潜在性能。

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