Efficient spin resolved spectroscopy observation machine at Hiroshima Synchrotron Radiation Center
Review of scientific instruments Volume 82 Issue 10
Page 103302-1-103302-7
published_at 2011-10-21
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Title ( eng ) |
Efficient spin resolved spectroscopy observation machine at Hiroshima Synchrotron Radiation Center
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Creator |
Miyahara Hirokazu
Kuroda Kenta
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Source Title |
Review of scientific instruments
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Volume | 82 |
Issue | 10 |
Start Page | 103302-1 |
End Page | 103302-7 |
Abstract |
Highly efficient spin- and angle-resolved photoelectron spectrometer named ESPRESSO (Efficient SPin REsolved SpectroScopy Observation) machine has been developed at the beamline BL-9B in Hiroshima Synchrotron Radiation Center. Combination of high-resolution hemispherical electron analyzer and the high-efficient spin detector based on very low energy electron diffraction by the ferromagnetic target makes the high-energy resolution and angular resolution compatible with spin- and angle-resolved photoemission (SARPES) measurement. 7.5 meV in energy and ±0.18° in angular resolution have been achieved with spin resolution. The ESPRESSO machine, combination of quick energy-band dispersion measurement and Fermi surface mapping by two-dimensional electron detector for the spin integrated ARPES and the high-efficient spin analysis by the efficient spin detector realizes the comprehensive investigation of spin electronic structure of materials.
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Keywords |
angular measurement
electron diffraction
Fermi surface
magnetoelectronics
photoelectron spectra
synchrotron radiation
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NDC |
Physics [ 420 ]
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Language |
eng
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Resource Type | journal article |
Publisher |
American Institute of Physics
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Date of Issued | 2011-10-21 |
Rights |
Copyright (c) 2011 American Institute of Physics.This article may be downloaded for personal use only. Any other use requires prior permission of the author and the American Institute of Physics.
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Publish Type | Version of Record |
Access Rights | open access |
Source Identifier |
[ISSN] 0034-6748
[DOI] 10.1063/1.3648102
[NCID] AA00817730
[DOI] http://dx.doi.org/10.1063/1.3648102
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