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題名 Dirac semimetal phases in chiral carbon nanoscrolls
作者 許琇娟
Hsu, Tzu-Ching;You, Jhih-Shih;Hsu, Hsiu-Chuan;Fulga, Ion Cosma
貢獻者 應物所
日期 2026-09
上傳時間 2-Sep-2026 15:53:25 (UTC+8)
摘要 Chirality induced by rolling a two-dimensional material into a spiral geometry reshapes its electronic band structure. In this work, we theoretically investigate the topological properties of carbon nanoscrolls under an axial magnetic field, focusing on structures in which chirality is encoded through shifted edge alignments. In contrast to unshifted structures, where mirror symmetry pins the Dirac cones to half a flux quantum, chiral carbon nanoscrolls lack this symmetry, and Dirac cones emerge at magnetic flux values away from half a flux quantum. We demonstrate that these Dirac cones are topologically protected by combined inversion-time reversal symmetry and remain robust even when sublattice symmetry is broken. Furthermore, we show that the number of Dirac cones and their real-space probability distributions depend on the number of turns and the magnetic field strength. Our study elucidates the role of chirality in the band topology of nanoscroll geometries.
關聯 Physical Review B, Vol.114, accepted
資料類型 article
DOI https://doi.org/10.1103/bvwr-y8gz
dc.contributor 應物所
dc.creator (作者) 許琇娟
dc.creator (作者) Hsu, Tzu-Ching;You, Jhih-Shih;Hsu, Hsiu-Chuan;Fulga, Ion Cosma
dc.date (日期) 2026-09
dc.date.accessioned 2-Sep-2026 15:53:25 (UTC+8)-
dc.date.available 2-Sep-2026 15:53:25 (UTC+8)-
dc.date.issued (上傳時間) 2-Sep-2026 15:53:25 (UTC+8)-
dc.identifier.uri (URI) https://ah.lib.nccu.edu.tw/item?item_id=184710-
dc.description.abstract (摘要) Chirality induced by rolling a two-dimensional material into a spiral geometry reshapes its electronic band structure. In this work, we theoretically investigate the topological properties of carbon nanoscrolls under an axial magnetic field, focusing on structures in which chirality is encoded through shifted edge alignments. In contrast to unshifted structures, where mirror symmetry pins the Dirac cones to half a flux quantum, chiral carbon nanoscrolls lack this symmetry, and Dirac cones emerge at magnetic flux values away from half a flux quantum. We demonstrate that these Dirac cones are topologically protected by combined inversion-time reversal symmetry and remain robust even when sublattice symmetry is broken. Furthermore, we show that the number of Dirac cones and their real-space probability distributions depend on the number of turns and the magnetic field strength. Our study elucidates the role of chirality in the band topology of nanoscroll geometries.
dc.format.extent 97 bytes-
dc.format.mimetype text/html-
dc.relation (關聯) Physical Review B, Vol.114, accepted
dc.title (題名) Dirac semimetal phases in chiral carbon nanoscrolls
dc.type (資料類型) article
dc.identifier.doi (DOI) 10.1103/bvwr-y8gz
dc.doi.uri (DOI) https://doi.org/10.1103/bvwr-y8gz