论文标题
石墨烯中明亮热等离子体中的中红外辐射发射
Mid-Infrared Radiative Emission from Bright Hot Plasmons in Graphene
论文作者
论文摘要
石墨烯中激发载体的衰减动力学吸引了广泛的科学注意力,因为无间隙的狄拉克电子带结构打开了传统材料中不允许的松弛通道。我们报告了石墨烯中的Fermi级依赖性中红外发射,该石墨烯源自先前未观察到的衰减通道:光学激发载体产生的热等离子体。观察到的Fermi级依赖性排除了Planckian的光发射机制,并且与光粉化石墨烯中计算出的等离子体发射光谱一致。在脉冲激发激发下,石墨烯等离激烯纳米式阵列的Fermi级依赖性和偏振依赖性谐振的发射进一步支持了明亮的热等离子体发射的证据。自发等离子体发射是一个明亮的发射过程,因为我们对实验条件的计算表明,在数千桶的温度下,自发产生的等离子的光谱通量比黑体发射高几个数量级。在这项工作中,可以表明,可以通过用金纳米光线装饰石墨烯表面来实现石墨烯等离子体的辐射效率的大幅提高,这些石墨烯表面充当外耦合散射剂,并在与输入的激发光中谐音时促进局部等离子体激发。这些观察结果为探索超快和超右中红外发射过程和光源的框架设定了一个框架。
The decay dynamics of excited carriers in graphene have attracted wide scientific attention, as the gapless Dirac electronic band structure opens up relaxation channels that are not allowed in conventional materials. We report Fermi-level-dependent mid-infrared emission in graphene originating from a previously unobserved decay channel: hot plasmons generated from optically excited carriers. The observed Fermi-level dependence rules out Planckian light emission mechanisms and is consistent with the calculated plasmon emission spectra in photoinverted graphene. Evidence for bright hot plasmon emission is further supported by Fermi-level-dependent and polarization-dependent resonant emission from graphene plasmonic nanoribbon arrays under pulsed laser excitation. Spontaneous plasmon emission is a bright emission process as our calculations for our experimental conditions indicate that the spectral flux of spontaneously generated plasmons is several orders of magnitude higher than blackbody emission at a temperature of several thousand Kelvin. In this work, it is shown that a large enhancement in radiation efficiency of graphene plasmons can be achieved by decorating graphene surface with gold nanodisks, which serve as out-coupling scatterers and promote localized plasmon excitation when they are resonant with the incoming excitation light. These observations set a framework for exploration of ultrafast and ultrabright mid-infrared emission processes and light sources.