DocumentCode :
837144
Title :
Operation of a 930-MHz high-resolution NMR magnet at TML
Author :
Kiyoshi, Tsukasa ; Matsumoto, Shinji ; Sato, Akio ; Yoshikawa, Masatoshi ; Ito, Satoshi ; Ozaki, Osamu ; Miyazaki, Takayoshi ; Miki, Takashi ; Hase, Takashi ; Hamada, Mamoru ; Noguchi, Takashi ; Fukui, Shigeo ; Wada, Hitoshi
Author_Institution :
Tsukuba Magnet Lab., Nat. Inst. for Mater. Sci., Tsukuba, Japan
Volume :
15
Issue :
2
fYear :
2005
fDate :
6/1/2005 12:00:00 AM
Firstpage :
1330
Lastpage :
1333
Abstract :
A 920-MHz high-resolution NMR spectrometer has been operating at the Tsukuba Magnet Laboratory (TML) since April 2002. It has proved its effectiveness by determining the 3-D structures of protein molecules. To accelerate studies in structural biology and solid-state NMR, a second high-field NMR magnet was developed and installed at TML. Although its basic design was the same as that of the first magnet, some improvements were made. For the innermost coil, a 16%Sn-bronze-processed (Nb,Ti)3Sn conductor was employed. The increase in the critical current density above that of a 15%Sn-bronze-processed (Nb,Ti)3Sn conductor made it possible to reduce the conductor size from 3.5 mm × 1.75 mm in the first magnet to 2.80 mm × 1.83 mm in the second. At the same operating current of the first magnet, the second magnet is expected to operate at 930 MHz. The liquid helium reservoir and the superfluid helium cooler, which were separated in the first system, were united in the same chamber in the new magnet. The latter magnet was energized up to 21.9 T without quenching in March 2004 and has operated in a persistent-mode at that field. It will be utilized mainly for solid-state NMR measurements.
Keywords :
NMR spectrometers; biological NMR; critical current density (superconductivity); niobium alloys; superconducting magnets; tin alloys; titanium alloys; (NbTi)3Sn; 21.9 T; 930 MHz; TML; critical current density; high magnetic field; high-resolution NMR magnet; liquid helium reservoir; nuclear magnetic resonance; protein molecules; solid-state NMR measurements; structural biology; superconducting magnet; superfluid helium cooler; Acceleration; Conductors; Helium; Laboratories; Magnetic separation; Nuclear magnetic resonance; Proteins; Solid state circuits; Spectroscopy; Tin; High magnetic field; NMR magnet; nuclear magnetic resonance; superconducting magnet;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2005.849585
Filename :
1439887
Link To Document :
بازگشت