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Enhanced hot luminescence at van Hove singularities in twisted bilayer graphene

机译:扭曲双层石墨烯中Van Hove奇异性增强的热发光

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Summary form only given. In twisted bilayer graphene (tBLG), the electronic and optical properties show interesting dependence on the interlayer rotation angle(0) with promising device applications [1,2]. The presence of the van Hove singularities in the density of states leads to an enhancement of the optical absorption at energies that depends on the rotation angle [2]. In single layer graphene, it has been shown that after excitation with a femtosecond pulse the excited carriers forms a quasi-equilibrium population at temperatures well above the lattice temperature that leads to thermal like emission, i.e. hot luminescence [3]. Here, we report on hot luminescence measurements with femtosecond laser pulse excitation on tBLG that shows an enhancement of the light emission as the excitation wavelength is tuned to a van Hove singularity resonance energy.Γ
机译:仅提供摘要表格。在扭曲的双层石墨烯(tBLG)中,电子和光学性能对层间旋转角(0)表现出令人感兴趣的依赖,并有望应用于器件[1,2]。状态密度中van Hove奇异点的存在会导致依赖于旋转角[2]的能量的光吸收增强。在单层石墨烯中,已显示出在用飞秒脉冲激发后,被激发的载流子在远高于晶格温度的温度下形成准平衡族,从而导致类似热的发射,即热发光[3]。在这里,我们报告了在tBLG上用飞秒激光脉冲激发进行的热发光测量,该发光强度随着激发波长被调谐到van Hove奇异共振能量而显示出发光的增强。

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