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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 041,263 (office)
Recent publications
  • About
  • Publications

One dimensional transport and gating of InAs/GaSb structures

Superlattices and Microstructures 15:1 (1994) 41-45

Authors:

Y Chen, DM Symons, M Lakrimi, A Salesse, GB Houston, RJ Nicholas, NJ Mason, PJ Walker

Abstract:

Semimetallic InAs/GaSb structures are known to contain simultaneously both two dimensional electrons in the InAs and two dimensional holes in the GaSb layers. Following successful anodisation of undoped GaSb, we describe transport measurements performed on a wide area gated sample and also a single quantum point contact. In the large area gated sample, the electron density increases and the hole density decreases when a positive gate voltage is applied. Under negative bias, an additional layer of holes is created at the interface between the insulating and GaSb capping layers, which is confirmed by self-consistent modelling of the band profile under external bias. The conductance of the point contact is found to exhibit quantised values. PACS: 72.20My, 23.80Ey, 73.40Qv. © 1994 Academic Press. All rights reserved.
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Low-field magnetotransport study of localization in a mesoscopic antidot array

Physical Review B 47:12 (1993) 7354-7360

Authors:

Y Chen, RJ Nicholas, GM Sundaram, PJ Heard, PD Prewett, JEF Frost, GAC Jones, DC Peacock, DA Ritchie

Abstract:

Low-field negative magnetoresistance has been studied on Ga+ ion focused-ion-beam-patterned GaAs/Ga1-xAlxAs heterojunctions as a function of carrier density and temperature. The negative magnetoresistance (NMR) is very large at low densities and decreases with increasing carrier density, giving a magnetoconductance linear in T at low densities but closer to a lnT dependence at higher values. The NMR of this grid structure is well explained using weak localization modified by boundary scattering in an array of one-dimensional point contacts. The NMR disappears after illumination as the patterning is screened by the increased electron density. From this model, we fit the phase-breaking rate as 1/τφ=A+BT, where the constant term is attributed to boundary scattering and the linear temperature dependence arises from electron-electron scattering. © 1993 The American Physical Society.
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Pressure-Tunable Large Anomalous Hall Effect in Ferromagnetic Metal LiMn6Sn6

Chinese Physics Letters IOP Publishing
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Quantum-Confined Tunable Ferromagnetism on the Surface of a Van der Waals Antiferromagnet NaCrTe2

Nano Letters American Chemical Society
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Robust topological surface state against direct surface contamination

Physica E: Low-dimensional Systems and Nanostructures

Authors:

ZK Liu, YL Chen, JG Analytis, SK Mo, DH Lu, RG Moore, IR Fisher, Z Hussain, ZX Shen
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