Lingyuan Kong
Chinese Academy of Sciences
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Featured researches published by Lingyuan Kong.
Physical Review Letters | 2016
Li Zeng; Rui Lou; D. S. Wu; Qiunan Xu; Peng-Jie Guo; Lingyuan Kong; Y. G. Zhong; J. Ma; B. B. Fu; P. Richard; Pengshuai Wang; G. T. Liu; L. Lu; Yaobo Huang; Chen Fang; Shanshan Sun; Qi Wang; Linjun Wang; Y. G. Shi; Hongming Weng; Hechang Lei; Kai Liu; Shancai Wang; T. Qian; J. L. Luo; H. Ding
By combining angle-resolved photoemission spectroscopy and quantum oscillation measurements, we performed a comprehensive investigation on the electronic structure of LaSb, which exhibits near-quadratic extremely large magnetoresistance (XMR) without any sign of saturation at magnetic fields as high as 40xa0T. We clearly resolve one spherical and one intersecting-ellipsoidal hole Fermi surfaces (FSs) at the Brillouin zone (BZ) center Γ and one ellipsoidal electron FS at the BZ boundary X. The hole and electron carriers calculated from the enclosed FS volumes are perfectly compensated, and the carrier compensation is unaffected by temperature. We further reveal that LaSb is topologically trivial but shares many similarities with the Weyl semimetal TaAs family in the bulk electronic structure. Based on these results, we have examined the mechanisms that have been proposed so far to explain the near-quadratic XMR in semimetals.
Physical Review B | 2016
Rui Lou; J. Ma; Qiunan Xu; B. B. Fu; Lingyuan Kong; Y. G. Shi; P. Richard; Hongming Weng; Zhong Fang; Shanshan Sun; Qi Wang; Hechang Lei; T. Qian; H. Ding; Shancai Wang
By using angle-resolved photoemission spectroscopy combined with first-principles calculations, we reveal that the topmost unit cell of ZrSnTe crystal hosts two-dimensional (2D) electronic bands of topological insulator (TI) state, though such a TI state is defined with a curved Fermi level instead of a global band gap. Furthermore, we find that by modifying the dangling bonds on the surface through hydrogenation, this 2D band structure can be manipulated so that the expected global energy gap is most likely to be realized. This facilitates the practical applications of 2D TI in heterostructural devices and those with surface decoration and coverage. Since ZrSnTe belongs to a large family of compounds having the similar crystal and band structures, our findings shed light on identifying more 2D TI candidates and superconductor-TI heterojunctions supporting topological superconductors.
Scientific Reports | 2017
L.-Y. Rong; Junzhang Ma; Simin Nie; Zhiquan Lin; Zong-Qiang Li; Binglei Fu; Lingyuan Kong; Xuze Zhang; Yingnan Huang; Hongming Weng; Tian Qian; H. Ding; Renzhong Tai
Topological materials with exotic quantum properties are promising candidates for quantum spin electronics. Different classes of topological materials, including Weyl semimetal, topological superconductor, topological insulator and Axion insulator, etc., can be connected to each other via quantum phase transition. For example, it is believed that a trivial band insulator can be twisted into topological phase by increasing spin-orbital coupling or changing the parameters of crystal lattice. With the results of LDA calculation and measurement by angle-resolved photoemission spectroscopy (ARPES), we demonstrate in this work that the electronic structure of SrSn2As2 single crystal has the texture of band inversion near the critical point. The results indicate the possibility of realizing topological quantum phase transition in SrSn2As2 single crystal and obtaining different exotic quantum states.
Science | 2018
Dongfei Wang; Lingyuan Kong; Peng Fan; Hui Chen; Shi-Yu Zhu; Wenyao Liu; Lu Cao; Yujie Sun; Shixuan Du; John Schneeloch; Ruidan Zhong; Genda Gu; Liang Fu; H. Ding; Hong-Jun Gao
An iron home for Majoranas The surface of the iron-based superconductor FeTe0.55Se0.45 has been identified as a potential topological superconductor and is expected to host exotic quasiparticles called the Majorana bound states (MBSs). Wang et al. looked for signatures of MBSs in this material by using scanning tunneling spectroscopy on the vortex cores formed by the application of a magnetic field. In addition to conventional states, they observed the characteristic zero-bias peaks associated with MBSs and were able to distinguish between the two, owing to the favorable ratios of energy scales in the system. Science, this issue p. 333 Scanning tunneling spectroscopy reveals signatures of Majorana bound states on the surface of FeTe1−xSex. The search for Majorana bound states (MBSs) has been fueled by the prospect of using their non-Abelian statistics for robust quantum computation. Two-dimensional superconducting topological materials have been predicted to host MBSs as zero-energy modes in vortex cores. By using scanning tunneling spectroscopy on the superconducting Dirac surface state of the iron-based superconductor FeTe0.55Se0.45, we observed a sharp zero-bias peak inside a vortex core that does not split when moving away from the vortex center. The evolution of the peak under varying magnetic field, temperature, and tunneling barrier is consistent with the tunneling to a nearly pure MBS, separated from nontopological bound states. This observation offers a potential platform for realizing and manipulating MBSs at a relatively high temperature.
arXiv: Materials Science | 2016
Rui Lou; B. B. Fu; Qiunan Xu; Peng-Jie Guo; Lingyuan Kong; Li Zeng; J. Ma; P. Richard; Chen Fang; Yaobo Huang; Shanshan Sun; Qi Wang; Linjun Wang; Y. G. Shi; Hechang Lei; Kai Liu; Hongming Weng; T. Qian; H. Ding; S.-C. Wang
Bulletin of the American Physical Society | 2018
B. B. Fu; Changjiang Yi; Tiantian Zhang; Marco Caputo; J. Ma; Xin Gao; Baiqing Lyu; Lingyuan Kong; Yaobo Huang; M. Shi; V. N. Strocov; Chen Fang; Hongming Weng; Youguo Shi; Tian Qian; H. Ding
Bulletin of the American Physical Society | 2018
Lingyuan Kong; Dongfei Wang; Shi-Yu Zhu; Peng Fan; Hui Chen; Wenyao Liu; Lu Cao; Yujie Sun; Shixuan Du; H. Ding; Hong-Jun Gao; John Schneeloch; Ruidan Zhong; Genda Gu; Liang Fu
Bulletin of the American Physical Society | 2018
Xun Shi; Lingyuan Kong; Jiangping Hu; Shancai Wang; Tian Qian; Yujie Sun; H. Ding
arXiv: Superconductivity | 2017
Dongfei Wang; Lingyuan Kong; Peng Fan; Hui Chen; Yujie Sun; Shixuan Du; J. A. Schneeloch; Ruidan Zhong; Genda Gu; Liang Fu; H. Ding; Hong-Jun Gao
arXiv: Superconductivity | 2017
Dongfei Wang; Lingyuan Kong; Peng Fan; Hui Chen; Shi-Yu Zhu; Wenyao Liu; Lu Cao; Yujie Sun; Shixuan Du; J. A. Schneeloch; Ruidan Zhong; Genda Gu; Liang Fu; H. Ding; Hong-Jun Gao