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Laboratoire National des Champs Magnétiques Intenses

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710: 159:) was achieved in 1987 within a collaboration including the CEA, the CNRS and the MPI. In 1990 a new 24 MW power supply was set into operation that led to the development of a new generation of magnet that reached progressively 33 T. In 2005 the Grenoble High Magnetic Field Laboratory became a CNRS laboratory and the German effort is focused on the development of the Dresden pulsed field laboratory. In 2009, the LNCMI is created by the merger of the Grenoble and the Toulouse laboratories. The development of static high magnetic field is pursued. 37 T is reached in 2018 paving the way for a new hybrid magnet to be set into operation in 2019. 995: 22: 1000: 696: 155:
from 1972 to 2004. This French-German collaboration led to the development of sciences under high magnetic fields in competition at that time with the MIT in Boston. The quantum hall effect was discovered at the laboratory and Klaus Van Klitzing received the Nobel Prize for this discovery in 1985. A world record of high magnetic field (31.35
110:, specialised in pulsed fields. The LNCMI provides a base for research related to high-strength magnetic fields by both resident scientists and visiting researchers from around the world. It is one of the three founding members of the European Magnetic Field Laboratory (EMFL) officially created in 2014. 154:
began conducting high magnetic field projects. Following those projects, the SNCI (National Service for high magnetic fields) was created in 1970. The dynamic created by the Élysée Treaty signed in 1963 between France and Germany led to collaboration between the SNCI and the Max Planck Institute
922: 130:) was created at the French National Institute of Applied Sciences of Toulouse in the early 60’s under the direction of S. Askénazy. In the early 1990s, it became the Laboratoire National des Champs Magnétiques Pulsés (LNCMP), a Joint research unit of the CNRS associated with the 1087: 560:
There are no constraints in cooling power for these resistive magnets: operation at full power (24 MW) for unlimited time is possible. The typical operating time of the magnets is 3 x 6.5 hours per day at workdays, 1 x 11 hours at weekends. Two 12 MW magnets can operate in
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are generated and long duration measurements are available thanks to the continuous cooling capacity of the neighboring river. A hybrid magnet aiming at a magnetic field of 43 Teslas of static field in a 34 mm room temperature bore is under
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generator, however in this last case the coil is destroyed during the experiment leaving only the sample intact. Moreover, transportable generators and magnets have been developed at the Toulouse site in order to be used for research
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The basic interface for magnet access is an x-y table mounted on an elevator which allows adjustment of height, tilt and horizontal alignment. Open diameter: 400 mm. Fixing: 12 tapped holes M8 on 420 mm
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As a research infrastructure, the LNCMI hosts researchers from all around the world so that they can conduct experiments using the highest magnetic fields possible in a given volume.
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The scientific researches published by the LNCMI focused mainly on Condensed Matter Physics with a ongoing development on Magnetoscience and applied superconductivity.
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Users can control the field (value, ramping speed) on-site during their experiment manually or by a GPIB interface (Read/Write). Template Labview VIs are available.
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To generate these fields and allow physics measurements, some large electrical and hydraulic installations as well as advanced instrumentation are required.
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The LNCMI was created in 2009 by the merger of the pulsed magnetic field Laboratory of Toulouse and the Grenoble High Magnetic Field Laboratory (GHMFL).
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At the Toulouse site, fields of up to 98 T are generated within a pulse of a hundred milliseconds. 200 T are reached for microseconds due to the
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research consortium created in 2014. The two other founding members are the High Magnetic Field Laboratory in Nijmegen, Netherlands, and the
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Languages, Literature, Performing Arts, Information and Communication (LLASIC)
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Physics, Engineering, Earth & Environmental Sciences, Mechanics (PhITEM)
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Department of undergraduate studies in sciences and technology (DLST)
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The Service National des Champs Magnétiques Pulsés (SNCMP, French:
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Computer Science, Mathematics and Applied Mathematics (IM2AG)
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Valence University Institute of Technology (IUT de Valence)
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At the Grenoble site, static magnetic fields of up to 37
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Grenoble Observatory for Sciences of the Universe (OSUG)
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Institute of Urban Planning and Alpine Geography (IUGA)
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Lautaret Alpine Garden (Joseph Fourier Alpine Station)
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VTI: 1.5 K - 300 K, Sample bore diameter 31 mm
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In 1962, when CNRS’s laboratories were built on the
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Laboratoire National des Champs Magnétiques Intenses
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Physics, Electronics and Materials Science (Phelma)
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It is based at two sites: one in 98:) is a research institution of the 1278:Science and technology in Grenoble 1224:Stendhal University (Grenoble III) 1103:Institute for Advanced Biosciences 822:Grenoble Alpes University Hospital 221:European Magnetic Field Laboratory 215:European Magnetic Field Laboratory 35:it lacks sufficient corresponding 14: 239:Superconducting Magnets @ LNCMI-G 172:Generating High Magnetic fields: 998: 993: 708: 694: 167:The LNCMI has several missions 20: 1151:Arboretum Robert Ruffier-Lanche 1183:Grenoble University Club (GUC) 431:Resistive DC Magnets @ LNCMI-G 1: 1035:Modane Underground Laboratory 374:50 warm bore, 33 cold bore 1147:Grenoble University Library 1304: 889:Faculty of Economics (FEG) 790:Arts and Humanities (ARSH) 1237: 1178:Grenoble University Choir 991: 878:Economics, law and & 761: 754:Université Grenoble Alpes 429: 237: 1141:University Health Center 676:lncmi-g.grenoble.cnrs.fr 652:lncmi-g.grenoble.cnrs.fr 136:Paul Sabatier University 840:Mathematical, physical 829:Faculty of Pharmacology 251:Equipment temperature 50:more precise citations. 1283:Laboratories in France 1204:Humbert II of Viennois 807:Languages Office (SDL) 793:Foreign languages (LE) 380:Optical spectroscopy 231:Facilities at Grenoble 95: 83: 1209:University of Valence 1170:Radio Campus Grenoble 1137:Polygone Scientifique 848:Chemistry and Biology 254:Experimental set-up 206:Hosting other users: 148:Polygone Scientifique 81: 893:Sciences Po Grenoble 419:VTI: 1.2 K - 300 K 405:VTI: 1.2 K - 300 K 363:VTI: 1.2 K - 300 K 352:Mesoscopic physics 338:Mesoscopic physics 324:Mesoscopic physics 293:VTI: 1.4 K - 300 K 279:VTI :1.4 K - 300 K 248:Bore diameter (mm) 196:Producing research: 886:Grenoble Law School 826:Faculty of Medicine 784:Arts and humanities 587:"Site web du LNCMI" 265:VTI: 1.8 K - 300 K 245:Magnetic field (T) 1132:Campus de Grenoble 394:FIR spectroscopy 84: 1263: 1262: 989: 988: 953:Polytech Grenoble 842:and life sciences 557: 556: 425: 424: 76: 75: 68: 1295: 1108:PACTE Laboratory 1002: 997: 982:Doctoral College 910: 815:Medical sciences 781: 770: 769:Grenoble, France 755: 746: 739: 732: 723: 718: 713: 712: 704: 699: 698: 686: 685: 683: 682: 668: 662: 661: 659: 658: 644: 638: 637: 635: 634: 625:. Archived from 619: 613: 611:Site web du CNRS 608: 602: 601: 599: 598: 589:. 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Index

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French
CNRS
Grenoble
Toulouse
French National Institute of Applied Sciences
Paul Sabatier University
Polygone Scientifique
Louis Néel
Teslas
Teslas
Megagauss
European Magnetic Field Laboratory
Dresden High Magnetic Field Laboratory
"Site web du LNCMI"
the original
Site web du CNRS
"Site web EMFL"
the original
"Laboratoire National des Champs Magnétiques Intenses - Grenoble - Superconducting magnets"
"Laboratoire National des Champs Magnétiques Intenses - Grenoble - Resistive magnet facilities"
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