Journal articles on the topic '4D Inelastic Neutron Scattering'

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1

Iida, Kazuki, Ryoichi Kajimoto, Yusuke Mizuno, Kazuya Kamazawa, Yasuhiro Inamura, Akinori Hoshikawa, Yukihiko Yoshida, et al. "Time-of-Flight Elastic and Inelastic Neutron Scattering Studies on the Localized 4d Electron Layered Perovskite La5Mo4O16." Journal of the Physical Society of Japan 86, no. 6 (June 15, 2017): 064803. http://dx.doi.org/10.7566/jpsj.86.064803.

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2

Petit, Sylvain. "Inelastic neutron scattering." EPJ Web of Conferences 155 (2017): 00007. http://dx.doi.org/10.1051/epjconf/201715500007.

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3

KAMIYAMA, Takashi, Shinichi ITOH, Toshiharu FUKUNAGA, and Kazuma HIROTA. "Neutron Total Scattering and Inelastic Neutron Scattering." Nihon Kessho Gakkaishi 46, no. 6 (2004): 390–98. http://dx.doi.org/10.5940/jcrsj.46.390.

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4

Shimoji, Mitsuo, and Toshio Itami. "3.6 Neutron Inelastic Scattering." Defect and Diffusion Forum 43 (January 1986): 223–30. http://dx.doi.org/10.4028/www.scientific.net/ddf.43.223.

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5

Lesher, S. R., C. Casarella, B. P. Crider, R. Ikeyama, I. Marsh, E. E. Peters, F. M. Prados-Estévez, et al. "Inelastic Neutron Scattering on160Gd." EPJ Web of Conferences 66 (2014): 02063. http://dx.doi.org/10.1051/epjconf/20146602063.

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6

Mellema, S., R. W. Finlay, and F. S. Dietrich. "Neutron inelastic scattering from54,56Fe." Physical Review C 33, no. 2 (February 1, 1986): 481–93. http://dx.doi.org/10.1103/physrevc.33.481.

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7

Al-Janabi, T. J., K. M. Mahmood, and A. B. Kadhim. "Neutron inelastic scattering measurements on159Tb." Journal of Physics G: Nuclear Physics 13, no. 5 (May 1987): 677–86. http://dx.doi.org/10.1088/0305-4616/13/5/016.

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8

Fainchtein, Raul, and Jeffrey S. Lannin. "Inelastic neutron scattering of amorphousNi0.95Tb0.05." Physical Review B 39, no. 9 (March 15, 1989): 5665–68. http://dx.doi.org/10.1103/physrevb.39.5665.

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9

Dobrzyński, L., A. Wiśniewski, Y. J. Uemura, S. M. Shapiro, and J. P. Wicksted. "Inelastic neutron scattering from Sendust." Physical Review B 37, no. 13 (May 1, 1988): 7175–81. http://dx.doi.org/10.1103/physrevb.37.7175.

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10

Cavadini, N., A. Zheludev, and D. Rubio-temprano. "Neutron inelastic scattering at SINQ." Neutron News 11, no. 3 (January 2000): 22–25. http://dx.doi.org/10.1080/10448630008233744.

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11

Trewhella, Jill, and Juergen Eckert. "Inelastic neutron scattering in biology." Physica B+C 136, no. 1-3 (January 1986): 507–11. http://dx.doi.org/10.1016/s0378-4363(86)80129-2.

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12

Nipko, J. C., and C. K. Loong. "Inelastic neutron scattering from zircon." Physica B: Condensed Matter 241-243 (December 1997): 415–17. http://dx.doi.org/10.1016/s0921-4526(97)00606-6.

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13

Price, David L. "Inelastic and quasielastic neutron scattering." Current Opinion in Solid State and Materials Science 2, no. 4 (August 1997): 477–82. http://dx.doi.org/10.1016/s1359-0286(97)80093-9.

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14

Uimin, Gennadi. "Inelastic neutron scattering in CeB6." Physics Letters A 215, no. 1-2 (May 1996): 97–102. http://dx.doi.org/10.1016/0375-9601(96)00217-4.

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15

Yang, Changping, Masahumi Kohgi, Kazuaki Iwasa, Hitoshi Sugawara, and Hideyuki Sato. "Inelastic Neutron Scattering from CeOs4Sb12." Journal of the Physical Society of Japan 74, no. 10 (October 2005): 2862–63. http://dx.doi.org/10.1143/jpsj.74.2862.

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16

Chaplot, S. L., B. A. Dasannacharya, R. Mukhopadhyay, K. R. Rao, P. R. Vijayaraghavan, R. M. Iyer, G. M. Phatak, and J. V. Yakhmi. "Inelastic neutron scattering from Tl2CaBa2Cu2O8." Bulletin of Materials Science 14, no. 3 (June 1991): 603–5. http://dx.doi.org/10.1007/bf02744692.

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17

YAMADA, Kazuyoshi. "Neutron Beam Analyses and Its Application VIII. Neutron Inelastic Scattering. 2. Spin Fluctuation Studied by Neutron Inelastic Scattering." RADIOISOTOPES 46, no. 5 (1997): 311–16. http://dx.doi.org/10.3769/radioisotopes.46.311.

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18

Nakatani, A. I., R. Ivkov, P. Papanek, H. Yang, and M. Gerspacher. "Inelastic Neutron Scattering from Filled Elastomers." Rubber Chemistry and Technology 73, no. 5 (November 1, 2000): 847–63. http://dx.doi.org/10.5254/1.3547624.

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Abstract Inelastic neutron scattering experiments are powerful techniques for evaluating local molecular dynamics. These methods are especially sensitive to hydrogen atoms containing motions. An overview of these experimental techniques is presented. Neutron filter analyzer and time-of-flight spectroscopy methods are used to characterize the local dynamics of polymers in the presence and absence of fillers. Of particular interest is the comparison between bound rubber attached to the filler surface and the pure, unbound rubber. A commercial synthetic polyisoprene containing approximately 100% cis-1,4 isomers was compounded with three different carbon blacks: N299, G299 (graphitized N299), and N762. Soxhlet extraction on each of the samples was performed so that corresponding samples containing purely bound rubber with filler were obtained. The filter analyzer and time-of flight spectra show distinct differences between the bound and pure rubber as well as differences based on carbon black type. Correlation of the spectral differences to the type of carbon black and initial concentration of carbon black are discussed.
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19

Mitchell, Philip C. H. "Inelastic neutron scattering studies of catalysts." Acta Physica Hungarica 75, no. 1-4 (December 1994): 131–40. http://dx.doi.org/10.1007/bf03156567.

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20

Neumann, D. A., and B. Hammouda. "Ultra-high resolution inelastic neutron scattering." Journal of Research of the National Institute of Standards and Technology 98, no. 1 (January 1993): 89. http://dx.doi.org/10.6028/jres.098.007.

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21

Kuwasawa, Atsushi, Shoji Kashida, Susumu Ikeda, and Yasusada Yamada. "Inelastic Neutron Scattering Study of KDCO3." Journal of the Physical Society of Japan 66, no. 9 (September 15, 1997): 2907–10. http://dx.doi.org/10.1143/jpsj.66.2907.

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22

Page, J. H., W. J. L. Buyers, G. Dolling, P. Gerlach, and J. P. Harrison. "Neutron inelastic scattering from fumed silica." Physical Review B 39, no. 9 (March 15, 1989): 6180–85. http://dx.doi.org/10.1103/physrevb.39.6180.

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23

Kornilov, N. V., and A. B. Kagalenko. "Inelastic Neutron Scattering by235U and238U Nuclei." Nuclear Science and Engineering 120, no. 1 (May 1995): 55–64. http://dx.doi.org/10.13182/nse120-55.

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24

Buchenau, U. "Inelastic Neutron Scattering from Glass Formers." Progress of Theoretical Physics Supplement 126 (1997): 151–57. http://dx.doi.org/10.1143/ptps.126.151.

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25

Herwig, K. W., and R. O. Simmons. "Inelastic neutron scattering from gaseous hydrogen." Molecular Physics 75, no. 6 (April 20, 1992): 1393–400. http://dx.doi.org/10.1080/00268979200101061.

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26

Kneller, G. R. "Inelastic neutron scattering from classical systems." Molecular Physics 83, no. 1 (September 1994): 63–87. http://dx.doi.org/10.1080/00268979400101081.

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27

Vanhoy, J. R., J. M. Anthony, B. M. Haas, B. H. Benedict, B. T. Meehan, Sally F. Hicks, C. M. Davoren, and C. L. Lundstedt. "Structural characteristics ofCe142through inelastic neutron scattering." Physical Review C 52, no. 5 (November 1, 1995): 2387–400. http://dx.doi.org/10.1103/physrevc.52.2387.

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28

Magnani, N., K. Gofryk, D. T. Adroja, E. Colineau, J. C. Griveau, K. A. McEwen, D. Kaczorowski, and R. Caciuffo. "Inelastic neutron scattering study of UPd2Sn." Journal of Applied Physics 111, no. 7 (April 2012): 07E123. http://dx.doi.org/10.1063/1.3673815.

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29

Buchenau, U. "Inelastic Neutron Scattering from Glass Formers." Progress of Theoretical Physics Supplement 126 (May 16, 2013): 151–57. http://dx.doi.org/10.1143/ptp.126.151.

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30

Parker, Stewart F. "Inelastic neutron scattering spectra of polyethylene." Journal of the Chemical Society, Faraday Transactions 92, no. 11 (1996): 1941. http://dx.doi.org/10.1039/ft9969201941.

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31

Beyer, Roland, Axel Frotscher, Arnd R. Junghans, Markus Nyman, Arjan Plompen, Marcel Grieger, Toni Kogler, et al. "Fast neutron inelastic scattering from 7Li." EPJ Web of Conferences 239 (2020): 01029. http://dx.doi.org/10.1051/epjconf/202023901029.

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The inelastic scattering of fast neutrons from 7Li nuclei was investigated at the nELBE neutron-time-of-flight facility. The photon production cross section of 478 keV γ-rays from the first excited state of 7Li was determined by irradiating a disc of LiF with neutrons of energies ranging from 100 keV to about 10 MeV. The target position was surounded by a setup of 7 LaBr3 scintillation detectors and 7 high-purity germanium detectors to detect the de-excitation γ-rays. A 235U fission chamber was used to determine the incoming neutron flux. The number of detected photons was corrected for the detection efficiency, multiple scattering and the time-of-flight dependent data acquisition dead time. The preliminary results show reasonable agreement with some previous measurments but are about 15 % below the recent data taken at the GELINA facility.
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32

Riseborough, Peter. "Inelastic neutron scattering from anisotropic superconductors." Physica B: Condensed Matter 312-313 (March 2002): 19–21. http://dx.doi.org/10.1016/s0921-4526(01)01063-8.

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33

Nakotte, H., R. A. Robinson, T. M. Kelley, S. Chang, T. Swan-Wood, and E. Brück. "Inelastic neutron scattering studies on UNiGe." Physica B: Condensed Matter 312-313 (March 2002): 875–76. http://dx.doi.org/10.1016/s0921-4526(01)01254-6.

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34

Takeo, Y., T. Yosihama, M. Nishi, K. Nakajima, K. Kakurai, M. Isobe, and Y. Ueda. "Inelastic neutron scattering study of LiV2O5." Journal of Physics and Chemistry of Solids 60, no. 8-9 (September 1999): 1145–47. http://dx.doi.org/10.1016/s0022-3697(99)00064-5.

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35

Kashida, Shoji, Susumu Ikeda, and Yusuke Nakai. "Inelastic Neutron Scattering Study of KHCO3." Journal of the Physical Society of Japan 63, no. 12 (December 15, 1994): 4643–47. http://dx.doi.org/10.1143/jpsj.63.4643.

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36

Agafonov, A. I. "Inelastic neutron scattering from superconducting rings." Physics Letters A 374, no. 23 (May 2010): 2383–87. http://dx.doi.org/10.1016/j.physleta.2010.03.057.

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37

Lawrence, J. M., V. R. Fanelli, E. A. Goremychkin, R. Osborn, E. D. Bauer, K. J. McClellan, and A. D. Christianson. "Inelastic magnetic neutron scattering in CePd3." Physica B: Condensed Matter 403, no. 5-9 (April 2008): 783–85. http://dx.doi.org/10.1016/j.physb.2007.10.243.

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38

Pynn, R. "Inelastic neutron scattering with polarisation analysis." Physica B+C 136, no. 1-3 (January 1986): 75–79. http://dx.doi.org/10.1016/s0378-4363(86)80024-9.

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39

Rainford, B. D., D. T. Adroja, A. Severing, E. A. Goremychkin, J. D. Thompson, and Z. Fisk. "Inelastic neutron scattering study of U3Pt3Sb4." Physica B: Condensed Matter 206-207 (February 1995): 464–66. http://dx.doi.org/10.1016/0921-4526(94)00491-d.

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40

Hirata, So, Hajime Torii, Yukio Furukawa, Mitsuo Tasumi, and John Tomkinson. "Inelastic neutron scattering from trans-polyacetylene." Chemical Physics Letters 261, no. 3 (October 1996): 241–45. http://dx.doi.org/10.1016/0009-2614(96)00968-2.

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41

Itoh, S., K. Kakurai, Y. Endoh, and H. Tanaka. "Inelastic pulsed-neutron scattering from CsVCl3." Physica B: Condensed Matter 213-214 (August 1995): 161–63. http://dx.doi.org/10.1016/0921-4526(95)00091-m.

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42

Balakrishnan, G., D. McK Paul, and N. R. Bernhoeft. "Neutron inelastic scattering study of CePb3." Physica B: Condensed Matter 156-157 (January 1989): 815–17. http://dx.doi.org/10.1016/0921-4526(89)90802-8.

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43

Verkerk, P., P. H. K. de Jong, M. Arai, S. M. Bennington, W. S. Howells, and A. D. Taylor. "Inelastic neutron scattering in liquid lithium." Physica B: Condensed Matter 180-181 (June 1992): 834–36. http://dx.doi.org/10.1016/0921-4526(92)90484-a.

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44

Sidis, Y., M. Braden, P. Bourges, B. Hennion, S. NishiZaki, Y. Maeno, and Y. Mori. "Inelastic neutron scattering studies on Sr2RuO4." Physica B: Condensed Matter 281-282 (June 2000): 967–68. http://dx.doi.org/10.1016/s0921-4526(99)00906-0.

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45

Frost, C. D., B. D. Rainford, F. V. Carter, and S. S. Saxena. "Inelastic neutron scattering study of CeNi2Ge2." Physica B: Condensed Matter 276-278 (March 2000): 290–91. http://dx.doi.org/10.1016/s0921-4526(99)01480-5.

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46

RISEBOROUGH, P. S. "INELASTIC NEUTRON SCATTERING FROM ANISOTROPIC SUPERCONDUCTORS." International Journal of Modern Physics B 16, no. 20n22 (August 30, 2002): 3062–65. http://dx.doi.org/10.1142/s0217979202013572.

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The magnetic fluctuation spectra are calculated for various phases of anisotropic superconductors. Both singlet and triplet superconducting phases can support antiferromagnetic fluctuations for small values of the Coulomb repulsion, the spectra show power law frequency dependencies due to the nodes in the superconducting order parameter. For larger strengths of the Coulomb interaction, low energy critically damped collective excitations develop from the quasi-particle density of states in the gap. The q and ω dependence of the spectra can be used to deduce the character of the superconducting order parameter.
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47

Pynn, Roger, Jean-Paul Boucher, and Louis-Pierre Regnault. "Inelastic neutron scattering with polarization analysis." Physica B: Condensed Matter 160, no. 2 (November 1989): 204–10. http://dx.doi.org/10.1016/0921-4526(89)90058-6.

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48

Magnani, N., A. Paoluzi, L. Pareti, and J. A. Stride. "Inelastic neutron scattering study of Pr2Co12Fe5." Journal of Physics: Condensed Matter 20, no. 10 (February 19, 2008): 104222. http://dx.doi.org/10.1088/0953-8984/20/10/104222.

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49

Riseborogh, Peter. "Inelastic Neutron Scattering from Anisotropic Superconductors." Journal of the Physical Society of Japan 71, Suppl (January 2002): 344–46. http://dx.doi.org/10.1143/jpsjs.71s.344.

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50

Sosnick, T. R., W. M. Snow, and P. E. Sokol. "Deep-inelastic neutron scattering from liquidHe4." Physical Review B 41, no. 16 (June 1, 1990): 11185–202. http://dx.doi.org/10.1103/physrevb.41.11185.

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