Ab initio simulation of gap discrete breathers in strained graphene

被引:39
|
作者
Lobzenko, I. P. [1 ]
Chechin, G. M. [2 ]
Bezuglova, G. S. [2 ]
Baimova, Yu. A. [3 ,4 ]
Korznikova, E. A. [3 ]
Dmitriev, S. V. [3 ,5 ]
机构
[1] Russian Acad Sci, Ufa Sci Ctr, Inst Phys Mol & Crystals, Pr Oktyabrya 151, Ufa 450075, Russia
[2] South Fed Univ, Bolshaya Sadovaya Ul 105-42, Rostov Na Donu 344006, Russia
[3] Russian Acad Sci, Inst Met Superplast Problems, Ul Khalturina 39, Ufa 450001, Russia
[4] Russian Acad Sci, Mikheev Inst Met Phys, Ural Branch, Ul Sofii Kovalevskoi 18, Ekaterinburg 620990, Russia
[5] Natl Res Tomsk State Univ, Pr Lenina 36, Tomsk 634050, Russia
基金
俄罗斯基础研究基金会; 俄罗斯科学基金会;
关键词
INTRINSIC LOCALIZED MODES; ENERGY;
D O I
10.1134/S1063783416030203
中图分类号
O469 [凝聚态物理学];
学科分类号
070205 ;
摘要
The methods of the density functional theory were used for the first time for the simulation of discrete breathers in graphene. It is demonstrated that breathers can exist with frequencies lying in the gap of the phonon spectrum, induced by uniaxial tension of a monolayer graphene sheet in the "zigzag" direction (axis X), polarized in the "armchair" direction (axis Y). The found gap breathers are highly localized dynamic objects, the core of which is formed by two adjacent carbon atoms located on the Y axis. The atoms surrounding the core vibrate at much lower amplitudes along both the axes (X and Y). The dependence of the frequency of these breathers on amplitude is found, which shows a soft type of nonlinearity. No breathers of this type were detected in the gap induced by stretching along the Y axis. It is shown that the breather vibrations may be approximated by the Morse oscillators, the parameters of which are determined from ab initio calculations. The results are of fundamental importance, as molecular dynamics calculations based on empirical potentials cannot serve as a reliable proof of the existence of breathers in crystals.
引用
收藏
页码:633 / 639
页数:7
相关论文
共 50 条
  • [1] Ab initio simulation of gap discrete breathers in strained graphene
    I. P. Lobzenko
    G. M. Chechin
    G. S. Bezuglova
    Yu. A. Baimova
    E. A. Korznikova
    S. V. Dmitriev
    Physics of the Solid State, 2016, 58 : 633 - 639
  • [2] Discrete breathers in strained graphene
    Dmitriev, Sergey V.
    Khadeeva, Liya Z.
    Kivshar, Yuri S.
    IEICE NONLINEAR THEORY AND ITS APPLICATIONS, 2012, 3 (01): : 77 - 86
  • [3] Discrete breathers properties obtained from ab initio calculations in graphene and graphane
    Lobzenko, I. P.
    LETTERS ON MATERIALS-PIS MA O MATERIALAKH, 2016, 6 (01): : 73 - 76
  • [4] Gap discrete breathers in strained boron nitride
    Barani, Elham
    Korznikova, Elena A.
    Chetverikov, Alexander P.
    Zhou, Kun
    Dmitriev, Sergey V.
    PHYSICS LETTERS A, 2017, 381 (41) : 3553 - 3557
  • [5] An ab initio study of oxygen on strained graphene
    Manh-Thuong Nguyen
    JOURNAL OF PHYSICS-CONDENSED MATTER, 2013, 25 (39)
  • [6] Properties of discrete breathers in graphane from ab initio simulations
    Chechin, G. M.
    Dmitriev, S. V.
    Lobzenko, I. P.
    Ryabov, D. S.
    PHYSICAL REVIEW B, 2014, 90 (04):
  • [7] Effect of strain on gap discrete breathers at the edge of armchair graphene nanoribbons
    Korznikova, E. A.
    Baimova, J. A.
    Dmitriev, S. V.
    EPL, 2013, 102 (06)
  • [8] Energy transfer in strained graphene assisted by discrete breathers excited by external ac driving
    Evazzade, Iman
    Lobzenko, Ivan P.
    Korznikova, Elena A.
    Ovid'ko, Ilya A.
    Roknabadi, Mahmood Rezaee
    Dmitriev, Sergey V.
    PHYSICAL REVIEW B, 2017, 95 (03)
  • [9] Discrete breathers in hydrogenated graphene
    Liu, Bo
    Baimova, Julia A.
    Dmitriev, Sergey V.
    Wang, Xu
    Zhu, Hongwei
    Zhou, Kun
    JOURNAL OF PHYSICS D-APPLIED PHYSICS, 2013, 46 (30)
  • [10] Discrete breathers in deformed graphene
    Khadeeva, L. Z.
    Dmitriev, S. V.
    Kivshar, Yu. S.
    JETP LETTERS, 2011, 94 (07) : 539 - 543