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2
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22344457290
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Defects in inorganic photorefractive materials and their investigations
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P. Günter, J.P. Huignard (Eds.) Chapter 2, Springer, in press
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B. Briat, V.G. Grachev, G.I. Malovichko, O.F. Schirmer, M. Wöhlecke, Defects in inorganic photorefractive materials and their investigations, in: P. Günter, J.P. Huignard (Eds.), Photorefractive Materials, vol. 2, Chapter 2, Springer, in press.
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Photorefractive Materials
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Briat, B.1
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6
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B. Briat, H.J. Reyher, A. Hamri, N.G. Romanov, J.C. Launay, and F. Ramaz J. Phys.: Condens. Matter 7 1995 6951
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K. Buse, H. Hesse, U. van Stevendaal, S. Loheide, D. Sabbert, and E. Krätzig Appl. Phys. A59 1994 463
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Buse, K.1
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13
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22344454859
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20
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15-19 July Wake Forest University, North Carolina, USA (abstract only)
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20, 13th Int. Conf. Defects in Insulating Materials, 15-19 July 1996, Wake Forest University, North Carolina, USA (abstract only).
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(1996)
13th Int. Conf. Defects in Insulating Materials
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Bou Rjeily, H.1
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Petrova, D.3
Gospodinov, P.4
Briat, B.5
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14
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0006450726
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H. Bou Rjeily, F. Ramaz, D. Petrova, M. Gospodinov, and B. Briat SPIE 3178 1997 169
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SPIE
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Bou Rjeily, H.1
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15
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22344436408
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20
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May Lyon, France (abstract only)
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20, Conference on Photonic Materials, May 2000, Lyon, France (abstract only).
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(2000)
Conference on Photonic Materials
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Ramaz, F.1
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16
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0001224354
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V. Marinova, M. Veleva, D. Petrova, I.M. Kourmoulis, D.G. Papazoglou, A.G. Apostolidis, E.D. Vanidhis, and N.C. Deliolanis J. Appl. Phys. 89 2001 2686
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V. Marinova, S.H. Lin, V. Sainov, M. Gospodinov, and K.Y. Hsu J. Opt. A: Pure Appl. Opt. 5 2003 S500
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22
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22344451623
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B. Briat, M.T. Borowiec, H. Bou Rjeily, F. Ramaz, A. Hamri, and H. Szymczak Radiat. Effects Defects Solids 157 2002 989
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Radiat. Effects Defects Solids
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23
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0036841822
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B. Briat, A. Watterich, F. Ramaz, L. Kovacs, B. Forget, and N. Romanov Opt. Mater. 20 2002 253
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U. van Stevendaal, K. Buse, S. Kämper, H. Hesse, and E. Krätzig Appl. Phys. B 63 1996 315
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H. Song, S.X. Dou, M. Chi, H. Gao, Y. Zhu, and P. Ye J. Opt. Soc. Am. B 15 1998 1329
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39
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22344433918
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unpublished results
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9 (M = Ti, Cr, V, Ru) crystals, two nearby octahedra share a trigonal face and relatively isolated ion pairs are thus designed. Spectroscopic studies could be devoted to the consequences of exchange interactions in these model compounds, unpublished results.
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9 (M = Ti, Cr, V, Ru) Crystals, Two Nearby Octahedra Share a Trigonal Face and Relatively Isolated Ion Pairs Are Thus Designed. Spectroscopic Studies Could Be Devoted to the Consequences of Exchange Interactions in These Model Compounds
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Briat, B.1
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0031186183
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J. Fernández, A. Oleaga, R. Balda, M.D. Serrano, E. Dieguez, and M.A. Arriandiaga Opt. Mater. 8 1997 91
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43
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22344443409
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B. Briat, F. Ramaz, L. Kovacs et al., unpublished results
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B. Briat, F. Ramaz, L. Kovacs et al., unpublished results.
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