2003Surface Review and LettersRequires access

Beamline for Surface and Interface Structures at SPring-8

Osami Sakata, Y. Furukawa, Shunji Goto, Tetsuro Mochizuki, T. Uruga, Kohei Takeshita, Haruhiko Ohashi, T. Ohata, T. Matsushita, Sunao Takahashi, Hiroo Tajiri, Tetsuya Ishikawa, Masashi Nakamura, Makoto Ito, K. Sumitani, Toshio Takahashi, Takayoshi Shimura, Akira Saito, Masamitu Takahasi

Open publisher page 142 citations

Abstract

The main components of a new beamline for surface and interface crystal structure determination at SPring-8 are briefly described. Stages for the beamline monochromator are modified for making an incident X-ray intensity more stable for surface X-ray experiments. Absolute photon flux densities were measured with an incident photon energy. A new ultrahigh vacuum system is introduced with preliminary X-ray measurements from an ordered oxygen on Pt (111) surface.

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What this paper is about

The main components of a new beamline for surface and interface crystal structure determination at SPring-8 are briefly described. Stages for the beamline monochromator are modified for making an incident X-ray intensity more stable for surface X-ray experiments. Absolute photon flux densities were measured with an incident photon energy. A new ultrahigh vacuum system is introduced with preliminary X-ray measurements from an ordered oxygen on Pt (111) surface.

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OpenAlex reports 142 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

The main components of a new beamline for surface and interface crystal structure determination at SPring-8 are briefly described. Stages for the beamline monochromator are modified for making an incident X-ray intensity more stable for surface X-ray experiments. Absolute photon flux densities were measured with an incident photon energy. A new ultrahigh vacuum system is introduced with preliminary X-ray measurements from an ordered oxygen on Pt (111) surface.

Key concepts: Beamline, SPring-8, Monochromator, Spring (device), Flux (metallurgy), Optics, Surface (topology), Materials science

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