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Robust zero-energy modes in an electronic higher-order topological insulator
被引:191
|作者:
Kempkes, S. N.
[1
]
Slot, M. R.
[2
]
van den Broeke, J. J.
[1
]
Capiod, P.
[2
]
Benalcazar, W. A.
[3
]
Vanmaekelbergh, D.
[2
]
Bercioux, D.
[4
,5
]
Swart, I
[2
]
Smith, C. Morais
[1
]
机构:
[1] Univ Utrecht, Inst Theoret Phys, Utrecht, Netherlands
[2] Univ Utrecht, Debye Inst Nanomat Sci, Utrecht, Netherlands
[3] Penn State Univ, Dept Phys, 104 Davey Lab, University Pk, PA 16802 USA
[4] Donostia Int Phys Ctr, San Sebastian, Spain
[5] Basque Fdn Sci, Ikerbasque, Bilbao, Spain
基金:
欧洲研究理事会;
关键词:
QUANTUM SIMULATIONS;
REALIZATION;
STATES;
D O I:
10.1038/s41563-019-0483-4
中图分类号:
O64 [物理化学(理论化学)、化学物理学];
学科分类号:
070304 ;
081704 ;
摘要:
Quantum simulators are essential tools for understanding complex quantum materials. Platforms based on ultracold atoms in optical lattices and photonic devices have led the field so far, but the basis for electronic quantum simulators is now being developed. Here, we experimentally realize an electronic higher-order topological insulator (HOTI). We create a breathing kagome lattice by manipulating carbon monoxide molecules on a Cu(111) surface using a scanning tunnelling microscope. We engineer alternating weak and strong bonds to show that a topological state emerges at the corner of the non-trivial configuration, but is absent in the trivial one. Different from conventional topological insulators, the topological state has two dimensions less than the bulk, denoting a HOTI. The corner mode is protected by a generalized chiral symmetry, which leads to a particular robustness against perturbations. Our versatile approach to designing artificial lattices holds promise for revealing unexpected quantum phases of matter.
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页码:1292 / +
页数:7
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