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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 μm) 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.
Recent publications
  • About
  • Publications

One dimensional transport and gating of InAs/GaSb structures

Superlattices and Microstructures Elsevier 15:1 (1994) 41

Authors:

Y Chen, DM Symons, M Lakrimi, A Salesse, GB Houston, RJ Nicholas, NJ Mason, PJ Walker
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Low-field magnetotransport study of localization in a mesoscopic antidot array.

Physical review. B, Condensed matter 47:12 (1993) 7354-7360

Authors:

Y Chen, RJ Nicholas, GM Sundaram, PJ Heard, PD Prewett, JE Frost, GA Jones, DC Peacock, DA Ritchie
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Controlling charge density order in 2⁢𝐻−TaSe2 using a van Hove singularity

Physical Review Research American Physical Society
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Evidence of strong and mode-selective electron–phonon coupling in the topological superconductor candidate 2M-WS2

Nature Communications Nature Research (part of Springer Nature)
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Pressure-Tunable Large Anomalous Hall Effect in Ferromagnetic Metal LiMn6Sn6

Chinese Physics Letters IOP Publishing
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