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Dirac electrons in a dodecagonal graphene quasicrystal
- Ahn, Sung Joon;
- Moon, Pilkyung;
- Kim, Tae-Hoon;
- Kim, Hyun-Woo;
- Shin, Ha-Chul;
- ... Kahng, Se-Jong;
- 외 7명
WEB OF SCIENCE
301SCOPUS
298초록
Quantum states of quasiparticles in solids are dictated by symmetry. We have experimentally demonstrated quantum states of Dirac electrons in a two-dimensional quasicrystal without translational symmetry. A dodecagonal quasicrystalline order was realized by epitaxial growth of twisted bilayer graphene rotated exactly 30 degrees. We grew the graphene quasicrystal up to a millimeter scale on a silicon carbide surface while maintaining the single rotation angle over an entire sample and successfully isolated the quasicrystal from a substrate, demonstrating its structural and chemical stability under ambient conditions. Multiple Dirac cones replicated with the 12-fold rotational symmetry were observed in angle-resolved photoemission spectra, which revealed anomalous strong interlayer coupling with quasi-periodicity. Our study provides a way to explore physical properties of relativistic fermions with controllable quasicrystalline orders.
키워드
- 제목
- Dirac electrons in a dodecagonal graphene quasicrystal
- 저자
- Ahn, Sung Joon; Moon, Pilkyung; Kim, Tae-Hoon; Kim, Hyun-Woo; Shin, Ha-Chul; Kim, Eun Hye; Cha, Hyun Woo; Kahng, Se-Jong; Kim, Philip; Koshino, Mikito; Son, Young-Woo; Yang, Cheol-Woong; Ahn, Joung Real
- 발행일
- 2018-08-24
- 유형
- Article
- 저널명
- Science
- 권
- 361
- 호
- 6404
- 페이지
- 782 ~ +