External electric field modulation of single-layer MoSe2 electronic and optical properties: A first-principles investigation

被引:2
|
作者
Chafai, A. [1 ]
Behloul, M. [1 ,2 ]
Essaoudi, I. [1 ]
Ahuja, R. [3 ,4 ]
Ainane, A. [1 ]
机构
[1] Univ Moulay Ismail, Fac Sci, Lab Phys Mat & Modelisat Syst LP2MS, Unite Associee CNRST URAC 08,Phys Dept, BP 11201, Meknes, Morocco
[2] Mohammed V Univ, Fac Sci, Lab Condensed Matter & Interdisciplinary Sci LaMCS, Rabat, Morocco
[3] Uppsala Univ, Dept Phys & Astron, Condensed Matter Theory Grp, S-75120 Uppsala, Sweden
[4] Indian Inst Technol Ropar, Dept Phys, Rupnagar 140001, Punjab, India
来源
MICRO AND NANOSTRUCTURES | 2023年 / 182卷
基金
瑞典研究理事会;
关键词
2D materials; Electronic properties; Optical properties; Electric field; Density functional computations; SOLAR-CELL; METAL; BANDGAP; GRAPHENE; GROWTH; WSE2; AREA;
D O I
10.1016/j.micrna.2023.207652
中图分类号
O469 [凝聚态物理学];
学科分类号
070205 ;
摘要
A wisely applied external electric field could effectively develop the optoelectronic properties of single-layer materials. The optical and electronic characteristics of monolayer molybdenum diselenide (ML-MoSe2) are deeply studied by means of density functional computations (DFT) to pinpoint the effect of the out-of-plane applied electric field (F//Oz). In fact, variations in the applied electric field strength gradually increase the energy of the electronic band gap (Eg) from 1.44 eV at 0V/& ANGS; to 1.51 eV at & PLUSMN;0.6V/& ANGS;. We also probed a sharp drop in the energy gap at high intensities. However, dielectric function, reflectivity, and loss function are studied for unpolarized and polarized incident light. Interestingly, the 001-polarization of the incident light affects the dielectric function's magnitude and position; this effect is more emphasized in the presence of an electric field with positive strengths. Furthermore, we found that the applied negative/positive electric field enhances the UV-visible reflectivity. Also, blue shifts of the ML-MoSe2 optical properties spectrum appear when subjected to the 001-polarized incident light. However, the loss function exhibits a weak response to the applied F. Additionally, we obtain that the 001-light polarization improves a plasmonic peak around 100 nm. Our results will provide a new view to understanding the controllable optical and electronic properties of MoSe2 monolayer, which is valuable for the design of new optoelectronic and plasmonic devices under development.
引用
收藏
页数:11
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