Quantum Monte Carlo Study of Buckled GaAs Monolayer

被引:2
|
作者
Sharma, Rajesh O. [1 ]
Saini, Lalit K. [1 ]
Bahuguna, Bhagwati Prasad [1 ]
机构
[1] Sardar Vallabhbhai Natl Inst Technol Surat, Appl Phys Dept, Surat 395007, India
关键词
crystal structures; modeling; Monte Carlo simulation; nanolayers; solid-state structure; ELECTRON-GAS; GERMANENE; ENERGIES; RISE;
D O I
10.1002/masy.201600206
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
We have investigated the ground state properties of buckled GaAs monolayer using density functional theory (DFT) and quantum Monte Carlo (QMC) method. Standard first-principles approaches such as DFT with approximate exchange-correlation functionals do not describe the correlation effect accurately and hence, usually cannot predict results within the chemical accuracy. In order to accurate evaluation of correlation energy that makes a small but very important contribution to the total energy of an electronic system, the quantum Monte Carlo methods are used which include the correlation effect of electron-electron using Jastrow function. We found QMC energies are few tenths eV lower than the DFT energies and the buckled GaAs monolayer have direct the band gap of 1.46 eV within DFT calculations, whereas quasiparticle gap is 3.4(8) eV within QMC calculations. We have also calculated the electron affinity and ionization potential as a function of system size.
引用
收藏
页数:5
相关论文
共 50 条
  • [1] Quantum Monte Carlo study on electron-phonon coupling in monolayer graphene
    Ji, Kai
    Iwano, Kaoru
    Nasu, Keiichiro
    JOURNAL OF ELECTRON SPECTROSCOPY AND RELATED PHENOMENA, 2010, 181 (2-3) : 189 - 192
  • [2] Monte Carlo study of electron transport in monolayer silicene
    Borowik, Piotr
    Thobel, Jean-Luc
    Adamowicz, Leszek
    SEMICONDUCTOR SCIENCE AND TECHNOLOGY, 2016, 31 (11)
  • [3] A Monte Carlo Study of Electron Transport in Suspended Monolayer Graphene
    Rengel, Raul
    Couso, Carlos
    Martin, Maria J.
    PROCEEDINGS OF THE 2013 SPANISH CONFERENCE ON ELECTRON DEVICES (CDE 2013), 2013, : 175 - 178
  • [4] A Quantum Monte Carlo Study of the Reactions of CH with Acrolein
    Pakhira, Srimanta
    Lengeling, Benjamin S.
    Olatunji-Ojo, Olayinka
    Caffarel, Michel
    Frenklach, Michael
    Lester, William A., Jr.
    JOURNAL OF PHYSICAL CHEMISTRY A, 2015, 119 (18) : 4214 - 4223
  • [5] Quantum Monte Carlo Study of Positron Lifetimes in Solids
    Simula, K. A.
    Muff, J. E.
    Makkonen, I.
    Drummond, N. D.
    PHYSICAL REVIEW LETTERS, 2022, 129 (16)
  • [6] Terahertz emission from δ-doped GaAs and GaAs/AlGaAs: A comparative Monte Carlo study
    Reklaitis, Antanas
    OPTICS COMMUNICATIONS, 2014, 321 : 90 - 95
  • [7] Quantum Monte Carlo methods
    Luechow, Arne
    WILEY INTERDISCIPLINARY REVIEWS-COMPUTATIONAL MOLECULAR SCIENCE, 2011, 1 (03) : 388 - 402
  • [8] Optimized structure and electronic band gap of monolayer GeSe from quantum Monte Carlo methods
    Shin, Hyeondeok
    Krogel, Jaron T.
    Gasperich, Kevin
    Kent, Paul R. C.
    Benali, Anouar
    Heinonen, Olle
    PHYSICAL REVIEW MATERIALS, 2021, 5 (02)
  • [9] Efficiency of terahertz harmonic generation in GaAs quantum wire structure: a Monte Carlo simulation
    Borzdov, Andrei, V
    Borzdov, Vladimir M.
    Labunov, Vladimir A.
    V'yurkov, Vladimir V.
    INTERNATIONAL CONFERENCE ON MICRO- AND NANO-ELECTRONICS 2018, 2019, 11022
  • [10] Quantum Monte Carlo study of pressure-induced B3-B1 phase transition in GaAs
    Ouma, C. N. M.
    Mapelu, M. Z.
    Makau, N. W.
    Amolo, G. O.
    Maezono, Ryo
    PHYSICAL REVIEW B, 2012, 86 (10)