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Topological magnetic line defects in Fe(Te,Se)high-temperature superconductors

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摘要 The realization of Majorana zero modes in condensed matter have been attracting enormous interests from fundamental science such as topological quantum computation.Recently iron based superconductors were identified as a high-temperature platform for realizing topological superconductivity and Majorana modes.As unconventional superconductors,one of the most important characteristics of them is that they are in the vicinity of magnetic states due to the strong Hund’s coupling in iron atoms.Here we propose that the line defects with missing Te/Se anions in Fe(Se,Te)superconductors provide the realization of intrinsic antiferromagnetic(AFM)chains with Rashba spin-orbit coupling.Against conventional wisdom,Majorana zero modes(MZMs)can be robustly generated at these AFM chain ends.These results can consistently explain the recent experimental observation of zero-energy end states in line defects of monolayer Fe(Te,Se)/SrTiO_(3) by scanning tunneling microscopy(STM)measurements.Our research not only demonstrates an unprecedented interplay among native line defect,emergent magnetism and topological superconductivity but also explores a high-temperature platform for Majorana fermions.
出处 《Quantum Frontiers》 2023年第1期127-133,共7页 量子前沿(英文)
基金 funding provided by Shanghai Jiao Tong University supported by the National Natural Science Foundation of China(grant no.12047503) supported by the Ministry of Science and Technology(grant no.2022YFA1403901) the National Natural Science Foundation of China(grant no.NSFC-11888101) the New Cornerstone Foundation.
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