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Edge modes in finite-size systems with different edge terminals

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【作者】 王会平任莉张修丽秦立国

【Author】 Huiping Wang;Li Ren;Xiuli Zhang;Liguo Qin;School of Mathematics, Physics and Statistics, Shanghai University of Engineering Science;

【通讯作者】 王会平;

【机构】 School of Mathematics, Physics and Statistics, Shanghai University of Engineering Science

【摘要】 We investigate the behavior of edge modes in the presence of different edge terminations and long-range(LR) hopping.Here,we mainly focus on such model crystals with two different types of structures(type Ⅰ: "…-P-Q-P-Q-…" and type Ⅱ: "…=P-Q=P-Q=…"),where P and Q represent crystal lines(CLs),while the symbols "-" and "=" denote the distance between the nearest neighbor(NN) CLs.Based on the lattice model Hamiltonian with LR hopping,the existence of edge modes is determined analytically by using the transfer matrix method(TMM) when different edge terminals are taken into consideration.Our findings are consistent with the numerical results obtained by the exact diagonalization method.We also notice that edge modes can exhibit different behaviors under different edge terminals.Our result is helpful in solving novel edge modes in honeycomb crystalline graphene and transition metal dichalcogenides with different edge terminals.

【Abstract】 We investigate the behavior of edge modes in the presence of different edge terminations and long-range(LR) hopping.Here,we mainly focus on such model crystals with two different types of structures(type Ⅰ: "…-P-Q-P-Q-…" and type Ⅱ: "…=P-Q=P-Q=…"),where P and Q represent crystal lines(CLs),while the symbols "-" and "=" denote the distance between the nearest neighbor(NN) CLs.Based on the lattice model Hamiltonian with LR hopping,the existence of edge modes is determined analytically by using the transfer matrix method(TMM) when different edge terminals are taken into consideration.Our findings are consistent with the numerical results obtained by the exact diagonalization method.We also notice that edge modes can exhibit different behaviors under different edge terminals.Our result is helpful in solving novel edge modes in honeycomb crystalline graphene and transition metal dichalcogenides with different edge terminals.

【基金】 Project supported by the National Natural Science Foundation of China (Grant No. 11847061);Domestic Visiting Program for Young and Middle-aged Teachers in Shanghai Universities
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2024年10期
  • 【分类号】O469
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