Recent progress on non-Abelian anyons: from Majorana zero modes to topological Dirac fermionic modes

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作者
Yijia Wu
Jie Liu
XinCheng Xie
机构
[1] Fudan University,Institute for Nanoelectronic Devices and Quantum Computing
[2] Xi’an Jiaotong University,School of Physics, MOE Key Laboratory for Non
[3] Peking University,equilibrium Synthesis and Modulation of Condensed Matter
[4] Hefei National Laboratory,International Center for Quantum Materials, School of Physics
关键词
non-Abelian anyon; topological quantum computation; topological Dirac fermionic mode; Majorana zero mode; 05.30.Pr; 03.67.Lx; 03.65.Vf; 04.50.+h;
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摘要
Majorana zero modes (MZMs) have been intensively studied in recent decades theoretically and experimentally as the most promising candidate for non-Abelian anyons supporting topological quantum computation (TQC). In addition to the Majorana scheme, some non-Majorana quasiparticles obeying non-Abelian statistics, including topological Dirac fermionic modes, have also been proposed and therefore become new candidates for TQC. In this review, we overview the non-Abelian braiding properties as well as the corresponding braiding schemes for both the MZMs and the topological Dirac fermionic modes, emphasizing the recent progress on topological Dirac fermionic modes. A topological Dirac fermionic mode can be regarded as a pair of MZMs related by unitary symmetry, which can be realized in a number of platforms, including the one-dimensional topological insulator, higher-order topological insulator, and spin superconductor. This topological Dirac fermionic mode possesses several advantages compared with its Majorana cousin, such as superconductivity-free and larger gaps. Therefore, it provides a new avenue for investigating non-Abelian physics and possible TQC.
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