Observation of fractional edge excitations in nanographene spin chains

被引:0
|
作者
Shantanu Mishra
Gonçalo Catarina
Fupeng Wu
Ricardo Ortiz
David Jacob
Kristjan Eimre
Ji Ma
Carlo A. Pignedoli
Xinliang Feng
Pascal Ruffieux
Joaquín Fernández-Rossier
Roman Fasel
机构
[1] Empa—Swiss Federal Laboratories for Materials Science and Technology,
[2] International Iberian Nanotechnology Laboratory,undefined
[3] University of Alicante,undefined
[4] Technical University of Dresden,undefined
[5] University of the Basque Country,undefined
[6] IKERBASQUE,undefined
[7] Basque Foundation for Science,undefined
[8] Max Planck Institute of Microstructure Physics,undefined
[9] University of Bern,undefined
[10] IBM Research—Zurich,undefined
来源
Nature | 2021年 / 598卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Fractionalization is a phenomenon in which strong interactions in a quantum system drive the emergence of excitations with quantum numbers that are absent in the building blocks. Outstanding examples are excitations with charge e/3 in the fractional quantum Hall effect1,2, solitons in one-dimensional conducting polymers3,4 and Majorana states in topological superconductors5. Fractionalization is also predicted to manifest itself in low-dimensional quantum magnets, such as one-dimensional antiferromagnetic S = 1 chains. The fundamental features of this system are gapped excitations in the bulk6 and, remarkably, S = 1/2 edge states at the chain termini7–9, leading to a four-fold degenerate ground state that reflects the underlying symmetry-protected topological order10,11. Here, we use on-surface synthesis12 to fabricate one-dimensional spin chains that contain the S = 1 polycyclic aromatic hydrocarbon triangulene as the building block. Using scanning tunnelling microscopy and spectroscopy at 4.5 K, we probe length-dependent magnetic excitations at the atomic scale in both open-ended and cyclic spin chains, and directly observe gapped spin excitations and fractional edge states therein. Exact diagonalization calculations provide conclusive evidence that the spin chains are described by the S = 1 bilinear-biquadratic Hamiltonian in the Haldane symmetry-protected topological phase. Our results open a bottom-up approach to study strongly correlated phases in purely organic materials, with the potential for the realization of measurement-based quantum computation13.
引用
收藏
页码:287 / 292
页数:5
相关论文
共 50 条
  • [1] Observation of fractional edge excitations in nanographene spin chains
    Mishra, Shantanu
    Catarina, Goncalo
    Wu, Fupeng
    Ortiz, Ricardo
    Jacob, David
    Eimre, Kristjan
    Ma, Ji
    Pignedoli, Carlo A.
    Feng, Xinliang
    Ruffieux, Pascal
    Fernandez-Rossier, Joaquin
    Fasel, Roman
    [J]. NATURE, 2021, 598 (7880) : 287 - +
  • [2] Publisher Correction: Observation of fractional edge excitations in nanographene spin chains
    Shantanu Mishra
    Gonçalo Catarina
    Fupeng Wu
    Ricardo Ortiz
    David Jacob
    Kristjan Eimre
    Ji Ma
    Carlo A. Pignedoli
    Xinliang Feng
    Pascal Ruffieux
    Joaquín Fernández-Rossier
    Roman Fasel
    [J]. Nature, 2021, 599 : E6 - E6
  • [3] Observation of fractional edge excitations in nanographene spin chains (vol 598, pg 287, 2021)
    Mishra, Shantanu
    Catarina, Goncalo
    Wu, Fupeng
    Ortiz, Ricardo
    Jacob, David
    Eimre, Kristjan
    Ma, Ji
    Pignedoli, Carlo A.
    Feng, Xinliang
    Ruffieux, Pascal
    Fernandez-Rossier, Joaquin
    Fasel, Roman
    [J]. NATURE, 2021, 599 (7885) : E6 - E6
  • [4] Tuning Charge and Spin Excitations in Zigzag Edge Nanographene Ribbons
    Dutta, Sudipta
    Wakabayashi, Katsunori
    [J]. SCIENTIFIC REPORTS, 2012, 2
  • [5] Tuning Charge and Spin Excitations in Zigzag Edge Nanographene Ribbons
    Sudipta Dutta
    Katsunori Wakabayashi
    [J]. Scientific Reports, 2
  • [6] Fractional and composite excitations of antiferromagnetic quantum spin trimer chains
    Jun-Qing Cheng
    Jun Li
    Zijian Xiong
    Han-Qing Wu
    Anders W. Sandvik
    Dao-Xin Yao
    [J]. npj Quantum Materials, 7
  • [7] Fractional and composite excitations of antiferromagnetic quantum spin trimer chains
    Cheng, Jun-Qing
    Li, Jun
    Xiong, Zijian
    Wu, Han-Qing
    Sandvik, Anders W.
    Yao, Dao-Xin
    [J]. NPJ QUANTUM MATERIALS, 2022, 7 (01)
  • [8] Field-induced midgap edge excitations in quantum spin chains
    Lou, JZ
    Chen, CF
    Wang, XQ
    [J]. PHYSICAL REVIEW B, 2006, 73 (09)
  • [9] Excitations with fractional spin less than 1/2 in frustrated magnetoelastic chains
    Gazza, C. J.
    Dobry, A. O.
    Cabra, D. C.
    Vekua, T.
    [J]. PHYSICAL REVIEW B, 2007, 75 (16)
  • [10] Edge excitations in fractional Chern insulators
    Luo, Wei-Wei
    Chen, Wen-Chao
    Wang, Yi-Fei
    Gong, Chang-De
    [J]. PHYSICAL REVIEW B, 2013, 88 (16)