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http://dx.doi.org/10.4283/JKMS.2012.22.3.103

Introduction to Neutron Scattering for Magnetic Materials Research  

Jeong, Jae-Hong (CSCMR, Department of Physics & Astronomy, Seoul National University)
Lee, Sang-Hyun (CSCMR, Department of Physics & Astronomy, Seoul National University)
Park, Je-Geun (CSCMR, Department of Physics & Astronomy, Seoul National University)
Abstract
Having a de Broglie wavelength of a few ${\AA}$ with its corresponding energies in the range of a few to a few hundreds meV, neutrons are ideally suited for the studies of structure and dynamics in condensed matter research. Neutron scattering has been developed over the past 60 years or so and become a very mature and established experimental technique in the very broad range of material sciences. In this short introductory article, we have explained its working principles and provided few selected examples of application.
Keywords
neutron diffraction; inelastic neutron scattering; structure; dynamics;
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1 J. D. Jorgensen, M. A. Beno, D. G. Hinks, L. Soderholm, K. J. Volin, R. L. Hitterman, J. D. Grace, and Ivan K. Schuller, Phys. Rev. B 36, 3608 (1987).   DOI   ScienceOn
2 J. D. Jorgensen, B. W. Veal, W. K. Kwok, G. W. Crabtree, A. Umezawa, L. J. Nowicki, and A. P. Paulikas, Phys. Rev. B 36, 5731 (1987).   DOI   ScienceOn
3 J. Park, S. Lee, M. Kang, K.-H. Jang, C. Lee, S. V. Streltsov, V. V. Mazurenko, M. V. Valentyuk, J. E. Medvedeva, T. Kamiyama, and J.-G. Park, Phys. Rev. B 82, 054428 (2010).   DOI   ScienceOn
4 S. Lee, A. Pirogov, M. Kang, K.-H. Jang, M. Yonemura, T. Kamiyama, S.-W. Chenog, F. Gozzo, N. Shin, H. Kimura, Y. Noda, and J.-G. Park, Nature 451, 805 (2008).   DOI   ScienceOn
5 F. Boue, R. Cywinski, A. Furrer, H. Glattli, S. Kilcoyne, R. L. McGreevy, D. McMorrow, D. Myles, H. Ott, M. Rubhausen, and G. Weill, Neutron Scattering and Complementary Experimental Techniques. The ESS Project, Volume II, Chapter 5. ESS Council, Druckerei Plump (2002).
6 B. Brockhouse and A. T. Stewart, Phys. Rev. 100, 756 (1955).   DOI
7 R. M. Kicklow, G. Gilat, H. G. Smith, L. J. Raubenheimer, and M. K. Wilkinson, Phys. Rev. 164, 922 (1967).   DOI
8 T. J. Sato, S.-H. Lee, T. Katsufuji, M. Masaki, S. Park, J. R. D. Copley, and H. Takagi, Phys. Rev. 68, 014432 (2003).   DOI   ScienceOn
9 J. Jeong, E. A. Goremychkin, T. Guidi, K. Nakajima, G. S. Jeon, S.-A. Kim, S. Furukawa, Y. B. Kim, S. Lee, V. Kiryukhin, S.-W. Cheong, and J.-G. Park, Phys. Rev. Lett. 108, 077202 (2012).   DOI
10 T. Kamiyama, private communications (2003).
11 물리학과첨단기술 18, 5월호 (2009).
12 T. Mason, Physics Today 59, 44 (2006).