Hostname: page-component-cd9895bd7-lnqnp Total loading time: 0 Render date: 2024-12-26T18:06:26.188Z Has data issue: false hasContentIssue false

Neutron Scattering at the High Flux Isotope Reactor at Oak Ridge National Laboratory

Published online by Cambridge University Press:  22 February 2011

Mohana Yethiraj
Affiliation:
Neutron Scattering Group, Solid State Division Oak Ridge National Laboratory, Oak Ridge, TN 37831-6393
Jaime A. Fernandez-Baca
Affiliation:
Neutron Scattering Group, Solid State Division Oak Ridge National Laboratory, Oak Ridge, TN 37831-6393
Get access

Abstract

Since its beginnings in Oak Ridge and Argonne in the late 1940's, neutron scattering has been established as the premier tool to study matter in its various states. Since the thermal neutron wavelength is of the same order of magnitude as typical atomic spacings and because they have comparable energies to those of atomic excitations in solids, both structure and dynamics of matter can be studied via neutron scattering. The High Flux Isotope Reactor (HFIR) provides an intense source of neutrons with which to carry out these measurements. This paper summarizes the available neutron scattering facilities at the HFIR.

Type
Research Article
Copyright
Copyright © Materials Research Society 1995

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

REFERENCES

1 Proposal forms, guest assignment forms and general information about neutron scattering user facilities at HFIR can be obtained on the World Wide Web at URL: http://scatterbrain.ssd.ornl.gov/Google Scholar
2 Cable, J. W., Wakabayashi, N., and Radhakrishna, P., Phys. Rev. B 48, 6159 (1993).Google Scholar
3 Mook, H. A., Yethiraj, M., Aeppli, G., Mason, T. E., and Armstrong, T., Phys. Rev. Lett. 70, 3490 (1993).Google Scholar
4 Rogge, R. B., Yang, Y. S., Tun, Z., Gaulin, B. D., Fernandez-Baca, J. A., Nicklow, R. M., and Harrison, A., J. Appl. Phys. 73, 6451 (1993).Google Scholar
5 Paduani, C., Belanger, D. P., Wang, J., Han, S-J., and Nicklow, R. M., Phys. Rev. B. 50, 193 (1994).Google Scholar
6 Ikeda, H., Fernandez-Baca, J. A., Nicklow, R. M., Takahashi, M., and Iwasa, K., J. Phys. : Condensed Matter 6,1 (1994).Google Scholar
7 Mook, H. A., Chakoumakos, B. C., Mostoller, M., Boothroyd, A. T., and Paul, D. McK., Phys. Rev. Lett. 69 2272 (1992).Google Scholar
8 Morii, Y., Nagazawa, A., Matsuo, Y., Funahashi, S., Child, H. R., And Nicklow, R. M., J. Phys. Soc. Japan 60, 4160 (1991).Google Scholar
9 Mañosa, Ll., Zarestky, J., Lograsso, T., Delaney, D. W., and Stassis, C., Phys. Rev. B 48, 15708 (1993).Google Scholar
10 Katano, S., Funahashi, S., Mori, N., Ueda, Y. and Fernandez-Baca, J. A., Phys. Rev. B 48, 6569 (1993).Google Scholar
11 Katano, S., Yamaya, K., Fernandez-Baca, J. A. and Funahashi, S., Physica C 217, 73 (1993).Google Scholar
12 Katano, S., Fernandez-Baca, J. A., Funahashi, S., Mori, N., Ueda, Y. and Koga, K., Physica C 214, 64 (1993).Google Scholar
13 Wang, X. L., Hubbard, C. R., Alexander, K. B., Becher, P. F., Fernandez-Baca, J. A. and Spooner, S., Advan. X-ray Anal. 36, 499 (1993).Google Scholar
14 Chakoumakos, B. C., Lager, G. A. and Fernandez-Baca, J. A., Acta, Crystallogr. C 48, 414 (1992).Google Scholar
15 -R. Wang, Z., Wang, X.-L., Fernandez-Baca, J. A., Johnston, D. C. and Vaknin Science, D. 264, 402 (1994).Google Scholar
16 Crawford, M. K., Subramanian, M. A., Harlow, R. L., Fernandez-Baca, J. A., Wang, Z. R. and Johnston, D. J., Phys. Rev. B 49,9198 (1994).Google Scholar
17 Chakoumakos, B. C., Abraham, M. A. and Boatner, L. A., J. Solid State Chem. 109,197 (1994).Google Scholar
18 Chakoumakos, B. C., Fernandez-Baca, J. A. and Boatner, L. A. J. Solid State Chem. 103, 105 (1993).Google Scholar
19 Koehler, W. C., Physica (Utrecht), 137B, 320 (1986).Google Scholar
20 Affholter, K. A., Henderson, S. J., Wignall, G. D. Bunick, G. J., Haufler, R. E. and Compton, R. N., J. Chem. Phys. 99, 9924 (1994).Google Scholar
21 Wignall, G. D. and Bates, F. S., J. Appl. Cryst. 20, 28 (1986).Google Scholar
22 Wignall, G. D., Lin, J. S. and Spooner, S., J. Appl. Cryst. 23, 241 (1990).Google Scholar
23 Hamilton, W. A., Hayter, J. B. and Smith, G. S., Journal of Neutron Research 2,1 (1994).Google Scholar