Auger-photoelectron coincidence spectroscopy
Project/Area Number |
14540314
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Research Category |
Grant-in-Aid for Scientific Research (C)
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Allocation Type | Single-year Grants |
Section | 一般 |
Research Field |
固体物性Ⅰ(光物性・半導体・誘電体)
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Research Institution | High energy Accelerator Research Organization (2004) The High Energy Accelerator Research Organization (2002-2003) |
Principal Investigator |
MASE Kazuhiko High enegy Aocelerator Research Organization, Institute of Materials Structure Science, Associate professor, 物質構造科学研究所, 助教授 (40241244)
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Co-Investigator(Kenkyū-buntansha) |
KOBAYASHI Eiichi High energy Accelerator Research Organization, Institute of Materials Structure Science, cooperative researcher, 物質構造科学研究所, 協力研究員 (80319376)
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Project Period (FY) |
2002 – 2004
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Project Status |
Completed (Fiscal Year 2004)
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Budget Amount *help |
¥3,600,000 (Direct Cost: ¥3,600,000)
Fiscal Year 2004: ¥600,000 (Direct Cost: ¥600,000)
Fiscal Year 2003: ¥800,000 (Direct Cost: ¥800,000)
Fiscal Year 2002: ¥2,200,000 (Direct Cost: ¥2,200,000)
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Keywords | Surface / Synchrotron radiation / Auger-photoelectron coincidences ectroscopy / X-ray photoelectron spectroscopy / Auger spectroscopy / Auger processes / 電子-電子コインシデンス分光 |
Research Abstract |
Photoelectron spectroscopy and Auger electron spectroscopy are widely used for investigations of surfaces. Fundamental studies of Auger processes, however, are still developing. Interesting phenomena such as site-specific Auger, Auger subsequent to a shake-up photoemission and cascade Auger are not fully elucidated yet. By assembling a miniature cylindrical mirror electron energy analyzer (CMA) with a diameter of 26 mm in a coaxially symmetric mirror analyzer coaxially and confocally we have developed an apparatus for Auger-photoelectron coincidence spectroscopy (APECS). The CMA consists of a shield for electric field, inner and outer cylinders, a pinhole, and an electron multiplier. The performance was tested by measuring Si LVV Auger - Si 2p photoelectron coincidence spectra of a Si(111) surface. Features of the APECS apparatus are as follow. 1) Coincidence signal detection efficiency is improved by one order of magnitude from previous ones because of the large solid angle of the coaxially symmetric mirror analyzer and the CMA. 2) Positioning is quite easy, because the coaxially symmetric mirror analyzer and the CMA are assembled confocally on a rod with a mechanism for xyz positioning and tilt adjustment. 3) It can be installed to a multi-purpose ultrahigh vacuum chamber because it is constructed on a 203-mm-outer-diameter conflat flange with a 50-mm-retractable mechanism. 4) The production cost is low because the structure is simple and the number of the parts is relatively few.
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Report
(4 results)
Research Products
(16 results)