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UVSOR Synchrotron Facility Update

Hiroshi Ota, Elham Salehi, Masaki Fujimoto, Kenji Hayashi, Toshio Horigome, Hiroshi Iwayama, Masahiro Katoh, Naonori Kondo, Seiji Makita, Fumihiko Matsui, Hiroyuki Matsuda, Tetsunori Mizukawa, Aki Minakuchi, Eiken Nakamura, Masanari Nagasaka, Yasuaki Okano, Takuji Ohigashi, Masahiro Sakai, Kento Sugita, Kiyohisa Tanaka, Y. Taira, Fumitsuna Teshima, J. Yamazaki, Takayuki Yano, Hayato Yuzawa, Satoshi Kera

2022Journal of Physics Conference Series30 citationsDOIOpen Access PDF

Abstract

Abstract UVSOR is a Japanese low-energy synchrotron light source that has been operational since 1983. It has 750 MeV electron beam energy and a circumference of 53 m. The machine has undergone two major upgrades and is now called UVSOR-III, with a moderately small emittance of 17 nm·rad and is operated in the top-up mode at 300 mA. It has six undulators. Three in-vacuum undulators provide high-brightness VUV-SX light to the beamlines BL3U, BL4U, and BL6U. BL3U and BL4U are actively used for chemistry and life sciences using in situ and operando measurements, such as soft X-ray absorption and photoelectron spectroscopy. Since 2020, a unique photoelectron analyzer called the Momentum Microscope has been in operation in BL6U. Two variable polarization undulators provide high-brightness VUV light to the beamlines, BL5U and BL7U, which are used for solid-state physics through angle- and spin-resolved photoelectron spectroscopy. BL1U is equipped with two APPLE-II undulators in tandem and is used for various research purposes, including laser Compton scattering gamma rays. In addition to these beamlines, eight beamlines are operational which use bending magnet radiation, ranging from THz to tender X-rays. In 38 years of operation, we have dealt with and properly resolved machine problems, such as water leakage from magnet coils and cooling water flow paths in ultrahigh vacuum. Considering the machine’s declining competitiveness as a light source due to its aging and emerging demands in the low-energy area, we have started a design study on the future plan, as well as discussing it closely with the user community.

Topics & Concepts

SynchrotronOpticsSynchrotron radiationPhysicsCompton scatteringThermal emittanceBrightnessMaterials sciencePhotonBeam (structure)Particle Accelerators and Free-Electron LasersAdvanced X-ray Imaging TechniquesX-ray Spectroscopy and Fluorescence Analysis