论文标题

通过横向热电效应激烈的Terahertz辐射

Intense terahertz radiation via the transverse thermoelectric effect

论文作者

Yordanov, Petar, Priessnitz, Tim, Kim, Min-Jae, Cristiani, Georg, Logvenov, Gennady, Keimer, Bernhard, Kaiser, Stefan

论文摘要

Terahertz(THZ)辐射是一种强大的工具,其广泛应用程序从成像,传感和宽带通信到材料的光谱和非线性控制。 THZ技术的未来进步取决于可以在高级小型化设备中实现的高效,结构简单的THZ发射器的发展。在这里,我们展示了如何通过横向热电效应产生分层导电金属氧化物的自然电子各向异性。在脱离底物底物上生长的薄膜中,飞秒激光脉冲会产生超快的平面温度梯度,从而产生了平面内热电电流,从而可以有效地从膜结构中产生THZ场。我们在对分层金属PDCOO2和LA1.84SR0.16CUO4的薄膜的实验中证明了这一方案,并且当前的模型计算阐明了材料参数对发射THZ场的强度和光谱特性的影响。由于其简单性,该方法为开发高度通用的THZ来源和可集成的发射极元素开辟了一个有希望的途径。

Terahertz (THz) radiation is a powerful tool with widespread applications ranging from imaging, sensing, and broadband communications to spectroscopy and nonlinear control of materials. Future progress in THz technology depends on the development of efficient, structurally simple THz emitters that can be implemented in advanced miniaturized devices. Here we show how the natural electronic anisotropy of layered conducting transition metal oxides enables the generation of intense terahertz radiation via the transverse thermoelectric effect. In thin films grown on offcut substrates, femtosecond laser pulses generate ultrafast out-of-plane temperature gradients, which in turn launch in-plane thermoelectric currents, thus allowing efficient emission of the resulting THz field out of the film structure. We demonstrate this scheme in experiments on thin films of the layered metals PdCoO2 and La1.84Sr0.16CuO4, and present model calculations that elucidate the influence of the material parameters on the intensity and spectral characteristics of the emitted THz field. Due to its simplicity, the method opens up a promising avenue for the development of highly versatile THz sources and integrable emitter elements.

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