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首页> 外文期刊>Journal of Physics. Condensed Matter >Terahertz plasmonic excitations in Bi2Se3 topological insulator
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Terahertz plasmonic excitations in Bi2Se3 topological insulator

机译:Bi2se3拓扑绝缘体中的太赫兹等级激发

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After the discovery of Dirac electrons in condensed matter physics, more specifically in graphene and its derivatives, their potentialities in the fields of plasmonics and photonics have been readily recognized, leading to a plethora of applications in active and tunable optical devices. Massless Dirac carriers have been further found in three-dimensional topological insulators. These exotic quantum systems have an insulating gap in the bulk and intrinsic Dirac metallic states at any surface, sustaining not only single-particle excitations but also plasmonic collective modes. In this paper we will review the plasmon excitations in different microstructures patterned on Bi2Se3 topological insulator thin films as measured by terahertz spectroscopy. We discuss the dependence of the plasmon absorption versus the microstructure shape, wavevector, and magnetic field. Finally we will discuss the topological protection of both the Dirac single-particle and plasmon excitations.
机译:在冷凝物理学中发现狄拉克电子之后,更具体地在石墨烯及其衍生物中,它们已经容易被认识到了它们在血浆和光子田领域的潜力,从而导致活性和可调光学装置中的血清应用。 在三维拓扑绝缘体中进一步发现了无阻塞舞者。 这些异种量子系统在任何表面上具有在块状和本征DIRAC金属状态中的绝缘间隙,不仅维持单粒子激发,而且是等粒子激发等等离子体集体模式。 在本文中,我们将在通过太赫兹光谱法测量的Bi2Se3拓扑绝缘体薄膜上审查不同微结构中的等离子体激发。 我们讨论了等离子体吸收与微观结构形状,波动和磁场的依赖性。 最后,我们将讨论Dirac单粒子和等离子体激发的拓扑保护。

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