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Fabrication of Resonant-Tunneling-Diode Terahertz Oscillators Using Rectangular Cavity Resonators and Bow-Tie Antennas for High Output Powers

机译:使用矩形腔谐振器和弓形天线制造高输出功率谐振隧道二极管太赫兹振荡器

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Terahertz (THz) radiation, between light waves and millimeter waves, has been receiving much attention because of its applications. Resonant tunneling diodes (RTDs) are major candidates for THz wave sources, because of their operation at room temperature and compactness. Although we achieved a high frequency oscillation of 1.98 THz by a slot-antenna structure, the output power of RTD oscillators is relatively small, in the order of 10 μW at around 1 THz. To increase the output power, we have proposed THz oscillators using RTDs with cavity resonators and bow-tie antennas. The rectangle cavity is expected to reduce the conduction loss and inductance, and the large-area RTD can be used even at high frequency in this oscillator, but can also emit a high output power. A high-power THz oscillation of ~11 mW at around 1 THz is theoretically expected. However, planar slot antennas have been mainly used in conventional monolithic integrated RTD THz oscillators and the development of a fabrication process of the three-dimensional cavity resonator on a semiconductor substrate is required. In this work, we developed and established the fabrication process of the oscillator with cavity resonator using a tri-layer resist process (ZEP/PMGI/PMMA).
机译:光波和毫米波之间的太赫兹(THz)辐射由于其应用而受到了广泛的关注。谐振隧穿二极管(RTD)是太赫兹波源的主要候选产品,因为它们在室温下工作且结构紧凑。尽管我们通过缝隙天线结构实现了1.98 THz的高频振荡,但RTD振荡器的输出功率相对较小,在大约1 THz时约为10μW。为了增加输出功率,我们提出了使用带有腔谐振器和领结天线的RTD的THz振荡器。矩形腔有望减少传导损耗和电感,并且即使在该振荡器中以较高频率使用大面积RTD,也可以发射高输出功率。理论上预计在约1 THz时会有约11 mW的高功率THz振荡。然而,平面缝隙天线已经主要用于常规的单片集成RTD THz振荡器中,并且需要开发在半导体衬底上的三维腔谐振器的制造工艺。在这项工作中,我们使用三层抗蚀剂工艺(ZEP / PMGI / PMMA)开发并建立了带有腔谐振器的振荡器的制造工艺。

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