论文标题
通过Terahertz-Opaque的金膜观察到Terahertz电场异常渗透到GAAS/ALGAAS量子井中
Observation of anomalously strong penetration of terahertz electric field through terahertz-opaque gold films into a GaAs/AlGaAs quantum well
论文作者
论文摘要
我们观察到作用在二维电子气体(2DEG)上的Terahertz(THZ)辐射的异常高电场,但是在薄金膜下方,该膜在THZ频率下应该是不透明的。我们表明,如果同时满足两个条件,则会出现THZ电场通过非常高的导电金膜的异常渗透:(i)薄膜的厚度小于皮肤深度,并且(ii)在距离下,在距离下,THZ电场的厚度大大小于辐射波长。我们证明,在这种情况下,作用于2维吉格的田间的强度几乎与没有黄金膜的情况相同。对于宏观均质的无穿孔金膜,检测到该效果,该膜被THZ-LASER辐射照亮,其斑点小于膜区域。这消除了边缘衍射的近场,是异常穿透的可能原因。效果的显微镜起源在其细节中仍无法解释。观察到的效果可用于基于二维材料的开发THZ设备,需要在距离电子气体位置小于纳米距离的距离内放置可靠的高度传导最高的大门。
We observe an anomalously high electric field of terahertz (THz) radiation acting on a two-dimensional electron gas (2DEG) placed beneath a thin gold film, which, however, is supposed to be opaque at THz frequencies. We show that the anomalously strong penetration of the THz electric field through a very high conductive gold film emerges if two conditions are fulfilled simultaneously: (i) the film's thickness is less than the skin depth and (ii) the THz electric field is measured beneath the film at distances substantially smaller than the radiation wavelength. We demonstrate that under these conditions the strength of the field acting on a 2DEG is almost the same as it would be in the absence of the gold film. The effect is detected for macroscopically homogeneous perforation-free gold films illuminated by THz-laser radiation with a spot smaller than the film area. This eliminates the near-field of the edge diffraction as a possible cause of the anomalous penetration. The microscopic origin of the effect remains unexplained in its details, yet. The observed effect can be used for the development of THz devices based on two-dimensional materials requiring robust highly conducting top gates placed at less than nanometer distance from the electron gas location.