Dohun Kim
;
Seyoung Jin
;
Takashi Taniguchi
(National Institute for Materials Science
)
;
Kenji Watanabe
(National Institute for Materials Science
)
;
Jurgen H. Smet
;
Gil Young Cho
;
Youngwook Kim
説明:
(abstract)Magnetotransport of conventional semiconductor based double layer systems with barrier suppressed interlayer tunneling has been a rewarding subject due to the emergence of an interlayer coherent state that behaves as an excitonic superfluid. Large angle twisted bilayer graphene offers unprecedented strong interlayer Coulomb interaction, since both layer thickness and layer spacing are of atomic scale and a barrier is no more needed as the twist induced momentum mismatch suppresses tunneling. The extra valley degree of freedom also adds richness. Here we report the observation of fractional quantum Hall physics at 1/3 total filling for balanced layer population in this system. Monte Carlo simulations support that the ground state is also an excitonic superfluid but the excitons are composed of fractional rather than elementary charges. The observed phase transitions with an applied displacement field at this and other fractional fillings are also addressed with simulations. They reveal ground states with different topology and symmetry properties.
権利情報:
キーワード: Magnetotransport, double layer systems, excitonic superfluid
刊行年月日: 2025-01-02
出版者: Springer Science and Business Media LLC
掲載誌:
研究助成金:
原稿種別: 出版者版 (Version of record)
MDR DOI:
公開URL: https://doi.org/10.1038/s41467-024-55486-2
関連資料:
その他の識別子:
連絡先:
更新時刻: 2025-02-05 12:30:25 +0900
MDRでの公開時刻: 2025-02-05 12:30:25 +0900
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s41467-024-55486-2.pdf
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サイズ | 1.08MB | 詳細 |