论文标题
由可调屈曲引起的BN单层中的紫外线吸收增强
Enhanced ultraviolet absorption in BN monolayers caused by tunable buckling
论文作者
论文摘要
通过调整其平面屈曲,研究了整个紫外线光谱的六角硼(BN)单层的光学性质。通过SP $^2 $ bong的强$σ\ text { - }σ$键可以通过增加平面屈曲,将平面单层的杂交更改为更强的$σ\ text { - }π$键。这引起了$ S $ - 和$ p $ - 轨道的贡献,以形成费米能源周围的状态密度,并且在增加平面屈曲的情况下,这些州脱离了较低的能量。因此,在弯曲的BN单层中,BN单层平面单层的宽带间隙还原为较小的带隙,从而增强了其在Deep-UV区域的光学活性。研究了光学特性,例如介电函数,反射率,吸收和光电导率光谱。结果表明,对于深伏特区域中平面屈曲的中间值,可以通过$(12 \ text { - } 15)\%$提高吸收率,而$(15 \ text { - } 20)\%$在较高的平面屈曲值的较高值的值中。此外,根据传入光的极化方向,可见的和深伏脉区域的平面屈曲增加,可以提高光电率。我们的结果可能对紫外线范围内的光电BN单层设备(包括紫外线光谱,深紫外线通信和紫外线光电电视器)有用。
The optical properties of a hexagonal Boron Nitride (BN) monolayer across the UV spectrum are studied by tuning its planar buckling. The strong $σ\text{-}σ$ bond through sp$^2$ hybridization of a flat BN monolayer can be changed to a stronger $σ\text{-}π$ bond through sp$^3$ hybridization by increasing the planar buckling. This gives rise to the $s$- and $p$-orbital contributions to form a density of states around the Fermi energy, and these states dislocate to a lower energy in the presence of an increased planar buckling. Consequently, the wide band gap of a flat BN monolayer is reduced to a smaller band gap in a buckled BN monolayer enhancing its optical activity in the Deep-UV region. The optical properties such as the dielectric function, the reflectivity, the absorption, and the optical conductivity spectra are investigated. It is shown that the absorption rate can be enhanced by $(12\text{-}15)\%$ for intermediate values of planar buckling in the Deep-UV region, and $(15\text{-}20)\%$ at higher values of planar buckling in the near-UV region. Furthermore, the optical conductivity is enhanced by increased planar buckling in both the visible and the Deep-UV regions depending on the direction of the polarization of the incoming light. Our results may be useful for optoelectronic BN monolayer devices in the UV range including UV spectroscopy, deep-UV communications, and UV photodetectors.