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MLZ is a cooperation between: Neutron Laue Diffraction at MLZ Petr Čermák.

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Presentation on theme: "MLZ is a cooperation between: Neutron Laue Diffraction at MLZ Petr Čermák."— Presentation transcript:

1 MLZ is a cooperation between: Neutron Laue Diffraction at MLZ Petr Čermák

2 History X-Ray in 1912 by Laue [1] Neutron in 1947 by Wollan, Shull and Marney 10 hours exposition) [2] Just indium + film First neutron radiograph Now Image plates CCD detectors Acquisition < 1s 18. 6. 2015Grainau meeting2 [1] ECKERT, M. Ann. Phys. 2012, 524, A83-85. [2] E. O. Wollan, C. G. Shull, and M. C. Marney, Phys. Rev. 73 (1948) 527

3 Principle 18. 6. 2015Grainau meeting3

4 Neutron Laue in world (not TOF) ILL (Laue-Langevin) Vivaldi, Ladi (Image plate detector, cylindrical geometry) CYCLOPS (16 CCD detectors around sample) OrientExpress (2 CCD detectors, backscatering) ANSTO KOALA (Image plate detector) JOEY (CCD detectors, only backscattering) HFIR IMAGINE (Image plate) HZB FALCON (CCD, back + sweeping detector) MLZ nLAUE 18. 6. 2015Grainau meeting4

5 nLAUE Neutron camera 18. 6. 2015Grainau meeting5

6 nLAUE - Features 2x photonic science CCD detector (16 in CYCLOPS) ZnS Scintilator 252x198 cm (2000 x 1598px) Backscattering mode 0 - 150° angle possible Sample-detector distance adjustable (5-20 cm) Kappa cradle 3D sample rotation Sample table 3D sample transition 18. 6. 2015Grainau meeting6

7 Possibilities Orientation of the crystals 18. 6. 2015Grainau meeting7 1)Put the sample on the table 2)In NICOS: >>> NewSample(‘MySuperCompound') >>> move(sampleslit, 2) >>> count(120) 3)In Esmeralda: Automatic peak finding Select nodal spot Stepwise orientation around nodals Rotate to given orientation

8 Possibilities Orientation of the crystals Check of the crystal quality 18. 6. 2015Grainau meeting8 vs.

9 Possibilities Orientation of the crystals Check of the crystal quality Diffuse scattering, textures 18. 6. 2015Grainau meeting9

10 Possibilities Orientation of the crystals Check of the crystal quality Strong diffuse scattering Phase transition determination (300-2.3 K, oven in preparation) 18. 6. 2015Grainau meeting10 [1] P. Čermák, PRB 91, 144404 (2015) Ho 2 RhIn 8

11 Possibilities Orientation of the crystals Check of the crystal quality Strong diffuse scattering Phase transition determination (300-2.3 K, oven in preparation) Propagation vector determination 18. 6. 2015Grainau meeting11 [1] P. Čermák, PRB 89, 184409 (2014) [2] M. Klicpera, PRB 91, 224419 (2015) Nd 2 RhIn 8 CeCuAl 3 Magnetic structure unknown Moment 0.28 μ B /Ce 3+ Exposition 2h Just 3 peaks on CYCLOPS  PANDA  D10  solved

12 Possibilities Orientation of the crystals Check of the crystal quality Strong diffuse scattering Phase transition determination (300-2.3 K, oven in preparation) Propagation vector determination Full structure determination (  CYCLOPS) 18. 6. 2015Grainau meeting12 36x 1)Take more images (10 000 reflections) 2)Index reflection 3)Orient crystal 4)Refine orientation for all images 5)Integrate all peaks 6)Normalize peaks 7)Jana/Fullprof or 6) Fullprof

13 Big Thanks Esmeralda Team Luis Fuentes-Montero Juan Rodriguez-Carvajal nLAUE creators Thomas Keller Bjørn Pedersen 18. 6. 2015Grainau meeting13

14 Thanks for attention 18. 6. 2015Grainau meeting14 see wiki.frm2.tum.de/laue lauesuite.com With nLAUE you can: 1) Orient crystal 2) Check crystal quality 3) Incommensurate phase determination


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