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Superconducting magnets

 

Apply for magnet time here

 

The LNCMI gives access to 12 superconducting magnets. The different available configurations are given in the table below.

If you are requesting magnet time on a superconducting magnet, consulting with the research group in charge of the superconducting magnet prior to submission is essential (please click on the appropriate link of the contact person in the table below).
 
Superconducting magnets
Magnetic field (T) Bore diameter (mm) Equipment temperature Research group contact Experimental set-up
15.8 50 cold bore VTI : 1.8 K - 300 K

Molecular Magnetism

A-L. Barra

EPR
9 80 cold bore VTI :1.4 K - 300 K

NMR

M-H Julien, H. Mayaffre, M. Horvatic, S.Krämer

NMR
15.4 / 17.1 52 cold bore VTI : 1.4 K - 300 K

NMR

M-H Julien, H. Mayaffre, M. Horvatic, S.Krämer

NMR
15/17 52 cold bore

VTI : 1.4 K - 300 K

DR : 30 mK - 1.0 K

NMR

M-H Julien, H. Mayaffre, M. Horvatic, S.Krämer

NMR
15 / 17 52 cold bore

DR : 30 mK - 4 K

Sample bore diameter 34 mm

Mesoscopic physics

J-C. Portal

Mesoscopic physics
15 / 17 52 cold bore

VTI : 1.5 K - 300 K

Sample bore diameter 31 mm

Mesoscopic physics

J-C. Portal

Mesoscopic physics
12 / 14 52 cold bore

3He : 300 mK - 8 K

Sample bore diameter 31 mm

Mesoscopic physics

J-C. Portal

Mesoscopic physics
12 /14 52 cold bore VTI : 1.2 K - 300 K

Strongly correlated systems

A. de Muer, I. Sheikin

Specific heat
14 / 16

50 warm bore

33 cold bore

1.5 K - 300 K

Seminconductors & Nanophysics

C. Faugeras, M. Potemski

Optical spectroscopy
11 / 13 50 cold bore 4 K

Seminconductors & Nanophysics

M. Orlita

FIR spectroscopy
11 30 cold bore VTI : 1.2 K - 300 K

Low dimensional systems

B. Piot

Transport, In situ rotation, FIR-Laser
10 60 warm bore VTI : 1.2 K - 300 K

Applied superconductors

P. Pugnat