论文标题
六角硼氮化硼单层的发光第一原理研究:激子 - phonon耦合和底物的作用
First-principles study of luminescence in hexagonal boron nitride single layer: exciton-phonon coupling and the role of substrate
论文作者
论文摘要
六角硼硝酸盐(HBN)是一种宽带隙材料,紫外线既有强烈的激光发射,又具有强烈的激子 - phonon耦合。在最近合成的单层形式(M-HBN)上进行的发光实验的发射光谱相互不同,其中一些暗示声子辅助和直接发射通道之间存在共存。在这些结果的激励下,我们使用新的\ textit {ab intio}方法研究了(M-HBN)的光学响应,该方法考虑了原子振动对发光光谱的影响。我们构建动态激子 - phonon自能源,然后使用它来触及纠正光学响应函数,并在批量HBN上测试该方法作为基准。在我们的方法中,我们能够估计由声子辅助转变引起的直接峰的重归其化,这使我们能够准确地描述存在两个过程的光谱。我们发现,M-HBN的发射信号在很大程度上取决于其与底物的相互作用,这将其性质从直接材料变为间接材料,并修改了电子感觉的筛选。我们将M-HBN发射信号归因于明亮的直接激子,并考虑出现声子复制品的可能性。
Hexagonal boron nitride (hBN) is a wide band gap material with both strong excitonic light emission in the ultraviolet and strong exciton-phonon coupling. Luminescence experiments performed on the recently synthesized monolayer form (m-hBN) present emission spectra that differ from one another, with some suggesting a coexistence between phonon-assisted and direct emission channels. Motivated by these results, we investigated the optical response of (m-hBN) using a new \textit{ab initio} approach that takes into account the effects of atomic vibrations on the luminescence spectra. We construct the dynamical exciton-phonon self-energy, then use it to perturbatively correct the optical response functions and test this approach on bulk hBN as a benchmark. Within our approach we are able to estimate the renormalisation of the direct peak induced by phonon-assisted transitions, and this allows us to accurately describe spectra where both processes are present. We found that the emission signal of m-hBN is strongly dependent on its interaction with the substrate, which changes its nature from direct to indirect material and modifies the screening felt by the electrons. We attribute the m-hBN emission signal to the bright direct excitons and consider the likelihood of phonon replicas appearing.