太赫兹辐射
光电子学
共发射极
材料科学
光电导性
焦耳加热
探测器
电场
焦耳(编程语言)
砷化镓
异质结
激发态
激发
太赫兹间隙
光学
物理
远红外激光器
功率(物理)
激光器
量子力学
复合材料
太赫兹超材料
核物理学
作者
Ming Xu,Martin Mittendorff,R. J. B. Dietz,H. Künzel,B. Sartorius,Thorsten Göbel,H. Schneider,M. Helm,Stephan Winnerl
摘要
We report on scalable large-area terahertz emitters and detectors based on In0.53Ga0.47As/In0.52Al0.48As heterostructures for excitation with 1.55 μm radiation. Different geometries involving three different electrode gap sizes are compared with respect to terahertz (THz) emission, bias field distribution, and Joule heating. The field distribution becomes more favorable for THz emission as gap size increases, while Joule heating exhibits the opposite dependence. Devices with three different gap sizes, namely 3 μm, 5 μm, and 7.5 μm, have been investigated experimentally, the emitter with a gap size of 7.5 μm showed the best performance. The scalable devices are furthermore employed as detectors. The scalable electrode geometry enables spatially integrated detection, which is attractive for specific applications, e.g., where an unfocused THz beam has to be used.
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