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首页> 外文期刊>Science Advances >High-frequency rectification via chiral Bloch electrons
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High-frequency rectification via chiral Bloch electrons

机译:通过手性布朗电子进行高频整流

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摘要

Rectification is a process that converts electromagnetic fields into a direct current. Such a process underlies a wide range of technologies such as wireless communication, wireless charging, energy harvesting, and infrared detection. Existing rectifiers are mostly based on semiconductor diodes, with limited applicability to small-voltage or high-frequency inputs. Here, we present an alternative approach to current rectification that uses the intrinsic electronic properties of quantum crystals without using semiconductor junctions. We identify a previously unknown mechanism for rectification from skew scattering due to the inherent chirality of itinerant electrons in time-reversal invariant but inversion-breaking materials. Our calculations reveal large, tunable rectification effects in graphene multilayers and transition metal dichalcogenides. Our work demonstrates the possibility of realizing high-frequency rectifiers by rational material design and quantum wave function engineering.
机译:整流是将电磁场转换为直流电的过程。这样的过程利用了广泛的技术,例如无线通信,无线充电,能量收集和红外检测。现有的整流器主要基于半导体二极管,适用于小电压或高频输入。在这里,我们提出了一种替代方法,用于使用量子晶体的固有电子特性而不使用半导体结的替代方法。由于时间反转不变但倒置材料中的逝退电子的固有手足性,我们确定了从偏斜散射的先前未知机制。我们的计算揭示了石墨烯多层和过渡金属二均甲基化物中的大型可调整流效果。我们的工作展示了通过合理的材料设计和量子波函数工程实现高频整流器的可能性。

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