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A VUV sub-micron hotspot for photoemission spectroscopy

Vacuum ultraviolet (VUV) lasers have exhibited great potential as the light source for various spectroscopies, which, if they can be focused into a smaller beam spot, will not only allow investigation of mesoscopic materials but also find applications in manufacture of nano-objects with excellent precision. Towards this goal, scientists in China invented a 177 nm VUV laser system that can achieve a record-small (<1 渭m) focal spot at a long focal length (~45 mm). This system can be re-equipped for usage in low-cost ARPES and might benefit quantum materials, condensed matter physics and nanophotonics.

Prof Yulin Chen

Professor of Physics

Research theme

  • Quantum materials

Sub department

  • Condensed Matter Physics

Research groups

  • Electronic structures and photoemission spectroscopy
yulin.chen@physics.ox.ac.uk
Clarendon Laboratory, room RM263, Mullard Bldg.
  • About
  • Publications

Controlling charge density order in 2H-TaSe2 using a van Hove singularity

Physical Review Research American Physical Society (APS) 6:1 (2024) 013088

Authors:

WRB Luckin, Y Li, J Jiang, SM Gunasekera, C Wen, Y Zhang, D Prabhakaran, F Flicker, Y Chen, M Mucha-Kruczy艅ski

Extraction of Spatiotemporal Information of Rainfall-Induced Landslides from Remote Sensing

REMOTE SENSING 16:16 (2024) ARTN 3089

Authors:

Tongxiao Zeng, Jun Zhang, Yulin Chen, Shaonan Zhu

Topological electronic structure and spin texture of quasi-one-dimensional higher-order topological insulator Bi4Br4

Nature Communications Nature Research 14:1 (2023) 8089

Authors:

Wenxuan Zhao, Ming Yang, Runzhe Xu, Xian Du, Kaiyi Zhai, Cheng Peng, Ding Pei, Han Gao, Lixuan Xu, Junfeng Han, Yuan Huang, Zhongkai Liu, Yugui Yao, Jincheng Zhuang, Yi Du, Jinjian Zhou, Yulin Chen, Lexian Yang, Yidian Li

Abstract:

Abstract The notion of topological insulators (TIs), characterized by an insulating bulk and conducting topological surface states, can be extended to higher-order topological insulators (HOTIs) hosting gapless modes localized at the boundaries of two or more dimensions lower than the insulating bulk. In this work, by performing high-resolution angle-resolved photoemission spectroscopy (ARPES) measurements with submicron spatial and spin resolution, we systematically investigate the electronic structure and spin texture of quasi-one-dimensional (1D) HOTI candidate Bi 4 Br 4 . In contrast to the bulk-state-dominant spectra on the (001) surface, we observe gapped surface states on the (100) surface, whose dispersion and spin-polarization agree well with our ab-initio calculations. Moreover, we reveal in-gap states connecting the surface valence and conduction bands, which is a signature of the hinge states inside the (100) surface gap. Our findings provide compelling evidence for the HOTI phase of Bi 4 Br 4 . The identification of the higher-order topological phase promises applications based on 1D spin-momentum locked current in electronic and spintronic devices.

Pressure-induced superconductivity in the Zintl topological insulator SrIn2As2

Physical Review B American Physical Society (APS) 108:22 (2023) 224510

Authors:

Weizheng Cao, Haifeng Yang, Yongkai Li, Cuiying Pei, Qi Wang, Yi Zhao, Changhua Li, Mingxin Zhang, Shihao Zhu, Juefei Wu, Lili Zhang, Zhiwei Wang, Yugui Yao, Zhongkai Liu, Yulin Chen, Yanpeng Qi

Correction to: Measurement of the electronic structure of a type-II topological Dirac semimetal candidate VAl3 using angle-resolved photoelectron spectroscopy

Tungsten Springer Nature 5:4 (2023) 608-608

Authors:

Hong-Wei Fang, Ai-Ji Liang, Niels BM Schr枚ter, Sheng-Tao Cui, Zhong-Kai Liu, Yu-Lin Chen

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