论文标题
各向异性鲜明的偏移,田间诱导的解离和磷酸中激素的电吸收
Anisotropic Stark shift, field-induced dissociation, and electroabsorption of excitons in phosphorene
论文作者
论文摘要
我们计算结合能,鲜明的移位,电场诱导的解离速率以及在各种介电环境中磷酸烯中激素的Franz-keldysh效应。这三个效应均显示出对平面电场方向的明显依赖性,当将电场从扶手椅旋转到锯齿形轴时,解离速率尤其降低了几个数量级。为了更好地理解数值解离率,我们得出了弱电场引起的各向异性率的分析近似,从而推广了对各向同性二维半导体的先前获得的结果。通过将其与确切速率进行比较,该近似值在弱场极限中有效。在激子极化张量的扶手椅和锯齿形组件之间的巨大差异中,各向异性也很明显,我们为五个最低的状态计算了这些张力。如预期的那样,我们还发现扶手椅或锯齿形方向上的更为明显的史塔克变化,具体取决于所讨论的状态的对称性。最后,各向同性相互作用电位被证明是源自泊松方程的更准确的各向异性相互作用的极好近似,证实了磷烯的各向异性很大程度上是由于有效质量的方向依赖性。
We compute binding energies, Stark shifts, electric-field-induced dissociation rates, and the Franz-Keldysh effect for excitons in phosphorene in various dielectric surroundings. All three effects show a pronounced dependence on the direction of the in-plane electric field, with the dissociation rates in particular decreasing by several orders of magnitude upon rotating the electric field from the armchair to the zigzag axis. To better understand the numerical dissociation rates, we derive an analytical approximation to the anisotropic rates induced by weak electric fields, thereby generalizing the previously obtained result for isotropic two-dimensional semiconductors. This approximation is shown to be valid in the weak-field limit by comparing it to the exact rates. The anisotropy is also apparent in the large difference between armchair and zigzag components of the exciton polarizability tensor, which we compute for the five lowest lying states. As expected, we also find much more pronounced Stark shifts in either the armchair or zigzag direction, depending on the symmetry of the state in question. Finally, an isotropic interaction potential is shown to be an excellent approximation to a more accurate anisotropic interaction derived from the Poisson equation, confirming that the anisotropy of phosphorene is largely due to the direction dependence of the effective masses.