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Terahertz detection using photon-assisted tunnelling in triple-barrier quantum well structures

机译:在三垒量子阱结构中使用光子辅助隧穿进行太赫兹检测

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Summary form only given. The results of measurements on photon-assisted tunnelling in triple-barrier quantum well structures are reported. The series of AlGaAs/GaAs structures have been extensively characterised and have quantum well confinement energies of 40 to 90 meV. The energy width of the quantum well states is appropriately 1.2 meV. A Cavendish Laboratory quantum cascade laser (2.9 THz, <50 mW) excites transitions between quantum wells when the first well is thermally populated and the correct separation of the quantum well states has been achieved by the applied bias. The electromagnetic field is coupled into the structures by metallic diffraction gratings with periods between 15 and 29 /spl mu/m. The photo-induced currents have been measured as a function of bias and temperature. The estimated detectivities are compared with those for other Terahertz detectors. The potential for improvement in detectivity by optimizing the coupling of the electromagnetic field into the structures is discussed.
机译:仅提供摘要表格。报道了三垒量子阱结构中光子辅助隧穿的测量结果。该系列的AlGaAs / GaAs结构已被广泛地表征,并具有40至90meV的量子阱限制能。量子阱态的能量宽度适当地为1.2meV。当第一个阱被热填充并且通过施加偏压实现了量子阱状态的正确分离时,Cavendish实验室量子级联激光器(2.9 THz,<50 mW)激发了量子阱之间的跃迁。电磁场通过金属衍射光栅耦合到结构中,周期为15到29 / spl mu / m。已经测量了光感应电流作为偏置和温度的函数。将估计的检出率与其他太赫兹检测器的检出率进行比较。讨论了通过优化电磁场与结构的耦合来提高探测效率的潜力。

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