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光激发碲化铋纳米线中的狄拉克表面等离子体:光泵浦-太赫兹探测光谱学

Dirac surface plasmons in photoexcited bismuth telluride nanowires: optical pump-terahertz probe spectroscopy.

作者信息

Mithun K P, Kar Srabani, Kumar Abinash, Muthu D V S, Ravishankar N, Sood A K

机构信息

Center for Ultrafast Laser Applications, Indian Institute of Science, Bangalore 560012, India.

出版信息

Nanoscale. 2021 May 7;13(17):8283-8292. doi: 10.1039/d0nr09087e. Epub 2021 Apr 23.

Abstract

Collective excitation of Dirac plasmons in graphene and topological insulators has opened new possibilities of tunable plasmonic materials ranging from THz to mid-infrared regions. Using time resolved Optical Pump-Terahertz Probe (OPTP) spectroscopy, we demonstrate the presence of plasmonic oscillations in bismuth telluride nanowires (BiTe NWs) after photoexcitation using an 800 nm pump pulse. In the frequency domain, the differential conductivity (Δσ = σ-σ) spectrum shows a Lorentzian response where the resonance frequency (ω), attributed to surface plasmon oscillations, shifts with photogenerated carrier density (n) as . This dependence establishes the absorption of THz radiation by the Dirac surface plasmon oscillations of the charge carriers in the Topological Surface States (TSS) of BiTe NWs. Moreover, we obtain a modulation depth, tunable by pump fluence, of ∼40% over the spectral range of 0.5 to 2.5 THz. In addition, the time evolution of Δσ(t) represents a long relaxation channel lasting for more than 50 ps. We model the decay dynamics of Δσ(t) using coupled second order rate equations, highlighting the contributions from surface recombination as well as from trap mediated relaxation channels of the photoinjected carriers.

摘要

石墨烯和拓扑绝缘体中狄拉克等离激元的集体激发为从太赫兹到中红外区域的可调谐等离激元材料开辟了新的可能性。利用时间分辨光泵浦-太赫兹探测(OPTP)光谱,我们证明了在使用800 nm泵浦脉冲进行光激发后,碲化铋纳米线(BiTe NWs)中存在等离激元振荡。在频域中,微分电导率(Δσ = σ - σ)光谱显示出洛伦兹响应,其中归因于表面等离激元振荡的共振频率(ω)随光生载流子密度(n)的变化而变化,即 ω = ω₀ + C√n。这种依赖性证实了BiTe NWs拓扑表面态(TSS)中电荷载流子通过狄拉克表面等离激元振荡吸收太赫兹辐射。此外,我们在0.5至2.5太赫兹的光谱范围内获得了一个可通过泵浦通量调节的调制深度,约为40%。此外,Δσ(t)的时间演化代表了一个持续超过50 ps的长弛豫通道。我们使用耦合二阶速率方程对Δσ(t)的衰减动力学进行建模,突出了表面复合以及光注入载流子的陷阱介导弛豫通道的贡献。

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