\begin{document}${\cal {PT}}$\end{document} phase transition to happen in the topologically trivial region. In addition, the imaginary potential energy and spin-orbit coupling work together to make the topological phase transition occur in the topologically trivial region, and the topological non-trivial region becomes wider. The energy spectrum results show that the imaginary potential energy and the spin-orbit coupling can obviously control the zero-energy states of the system, which mainly lies in the presence of four zero-energy states with four different localities and numbers. This shows the special adjustment effect of imaginary potential energy and spin-orbit coupling on the energy band structure of the system. It is believed that these results are helpful in understanding the topological phase transition behavior of \begin{document}${\cal {PT}}$\end{document}-symmetric non-Hermitian system."> Topological properties of the one-dimensional <inline-formula><tex-math id="M2">\begin{document}${\cal {PT}}$\end{document}</tex-math><alternatives><graphic xmlns:xlink="http://www.w3.org/1999/xlink" xlink:href="17-20220796_M2.jpg"/><graphic xmlns:xlink="http://www.w3.org/1999/xlink" xlink:href="17-20220796_M2.png"/></alternatives></inline-formula>-symmetric non-Hermitian spin-orbit-coupled Su-Schrieffer-Heeger model - 必威体育下载

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Topological properties of the one-dimensional ${\cal {PT}}$ -symmetric non-Hermitian spin-orbit-coupled Su-Schrieffer-Heeger model

Li Jia-Rui, Wang Zi-An, Xu Tong-Tong, Zhang Lian-Lian, Gong Wei-Jiang
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  • Abstract views:4185
  • PDF Downloads:387
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  • Received Date:24 April 2022
  • Accepted Date:31 May 2022
  • Available Online:06 September 2022
  • Published Online:05 September 2022

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