Laser-based angle-resolved photoemission spectroscopy with micrometer spatial resolution and detection of three-dimensional spin vector

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作者
Takuma Iwata
T. Kousa
Y. Nishioka
K. Ohwada
K. Sumida
E. Annese
M. Kakoki
Kenta Kuroda
H. Iwasawa
M. Arita
S. Kumar
A. Kimura
K. Miyamoto
T. Okuda
机构
[1] Hiroshima University,Graduate School of Advanced Science and Engineering
[2] Hiroshima University,International Institute for Sustainability with Knotted Chiral Meta Matter (WPI
[3] Japan Atomic Energy Agency,SKCM2)
[4] Brazilian Center for Research in Physics,Materials Sciences Research Center
[5] Rua Dr. Xavier Sigaud 150,undefined
[6] Institute for Advanced Synchrotron Light Source,undefined
[7] National Institutes for Quantum Science and Technology,undefined
[8] Synchrotron Radiation Research Center,undefined
[9] National Institutes for Quantum Science and Technology,undefined
[10] Hiroshima Synchrotron Radiation Center,undefined
[11] Hiroshima University,undefined
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摘要
We have developed a state-of-the-art apparatus for laser-based spin- and angle-resolved photoemission spectroscopy with micrometer spatial resolution (µ-SARPES). This equipment is realized by the combination of a high-resolution photoelectron spectrometer, a 6 eV laser with high photon flux that is focused down to a few micrometers, a high-precision sample stage control system, and a double very-low-energy-electron-diffraction spin detector. The setup achieves an energy resolution of 1.5 (5.5) meV without (with) the spin detection mode, compatible with a spatial resolution better than 10 µm. This enables us to probe both spatially-resolved electronic structures and vector information of spin polarization in three dimensions. The performance of µ-SARPES apparatus is demonstrated by presenting ARPES and SARPES results from topological insulators and Au photolithography patterns on a Si (001) substrate.
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