论文标题

电子电子相互作用对石墨烯量子点接触热电效率的影响

Impact of electron-electron interactions on the thermoelectric efficiency of graphene quantum point contacts

论文作者

Sánchez-Ramírez, Irián, Baba, Yuriko, Chico, Leonor, Domínguez-Adame, Francisco

论文摘要

热电材料打开了利用消散能量并使电子设备减少能量要求的方法。热到电性转换需要具有强烈抑制的导热率,但电子传导仍然很高的材料。即使散装对应物的效率不高,该目标在很大程度上是在纳米结构材料的帮助下实现的。在这项工作中,我们研究了在低温下石墨烯纳米容器中多体效应来提高热电效率。为此,从平均场近似中的Kane-Mele-Hubbard模型开始,我们对电子电子相互作用对石墨烯纳米骨与扶手椅或Zigzag边缘的热电效率的影响进行了广泛的数值研究。我们考虑两种不同的制度,即琐碎和拓扑绝缘子。我们发现电子电子相互作用对于干扰现象的出现至关重要,这导致纳米骨的热电效率提高。最后,我们还提出了一个实验设置,该设置将有助于测试我们结论的有效性。

Thermoelectric materials open a way to harness dissipated energy and make electronic devices less energy-demanding. Heat-to-electricity conversion requires materials with a strongly suppressed thermal conductivity but still high electronic conduction. This goal is largely achieved with the help of nanostructured materials, even if the bulk counterpart is not highly efficient. In this work, we investigate how thermoelectric efficiency is enhanced by many-body effects in graphene nanoribbons at low temperature. To this end, starting from the Kane-Mele-Hubbard model within a mean-field approximation, we carry out an extensive numerical study of the impact of electron-electron interactions on the thermoelectric efficiency of graphene nanoribbons with armchair or zigzag edges. We consider two different regimes, namely trivial and topological insulator. We find that electron-electron interactions are crucial for the appearance of interference phenomena that give rise to an enhancement of the thermoelectric efficiency of the nanoribbons. Lastly, we also propose an experimental setup that would help to test the validity of our conclusions.

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