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Strong nonlinear terahertz response induced by Dirac surface states in Bi2Se3 topological insulator

机译:Bi2Se3拓扑绝缘体中Dirac表面态引起的强非线性太赫兹响应

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摘要

Electrons with a linear energy/momentum dispersion are called massless Dirac electrons and represent the low-energy excitations in exotic materials such as graphene and topological insulators. Dirac electrons are characterized by notable properties such as a high mobility, a tunable density and, in topological insulators, a protection against backscattering through the spin–momentum locking mechanism. All those properties make graphene and topological insulators appealing for plasmonics applications. However, Dirac electrons are expected to present also a strong nonlinear optical behaviour. This should mirror in phenomena such as electromagnetic-induced transparency and harmonic generation. Here we demonstrate that in Bi2Se3 topological insulator, an electromagnetic-induced transparency is achieved under the application of a strong terahertz electric field. This effect, concomitantly determined by harmonic generation and charge-mobility reduction, is exclusively related to the presence of Dirac electron at the surface of Bi2Se3, and opens the road towards tunable terahertz nonlinear optical devices based on topological insulator materials.
机译:具有线性能量/动量色散的电子称为无质量狄拉克电子,代表异质材料(例如石墨烯和拓扑绝缘体)中的低能激发。狄拉克电子的特征是具有显着特性,例如高迁移率,可调节的密度,并且在拓扑绝缘体中,可通过自旋动量锁定机制防止背向散射。所有这些特性使石墨烯和拓扑绝缘体吸引了等离子体应用。然而,预计狄拉克电子也将表现出强烈的非线性光学行为。这应该反映出电磁感应的透明性和谐波产生等现象。在这里,我们证明了在Bi2Se3拓扑绝缘体中,在强太赫兹电场的作用下可以实现电磁感应的透明性。这种效应是由谐波产生和电荷迁移率降低共同决定的,仅与Bi2Se3表面上Dirac电子的存在有关,这为通向基于拓扑绝缘体材料的可调谐太赫兹非线性光学器件开辟了道路。

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