Институт Физики им.Л.В.Киренского

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Papers 2000
1Aleksandrov K. S., Bartolome J., Gorev M. V., Flerov I. N. Hydrostatic pressure effect on phase transitions in perovskites with ammonium cation. Phys. Status. Sol., 2000, 217B, 785.
2Alekseev K. N., Alekseeva N., Perina J. The 1/N expansion, quantum-classical correspondence and nonclassical states generation in dissipative quantum optical systems. JETP, 2000, 90, 592.
3Alekseev K. N., Perina J. The 1/N expansion, quantum-classical correspondence and nonclassical states generation in the dissipative higher order anharmonic oscillators. Physica Scripta, 2000, 61, 7.
4Andreev A. L., Pozhidaev E. P., Kompanets I. N., Fedosenkova T. B., Zyryanov V. Ya., Smorgon S. L., Weyrauch T., Haase W. Saturation voltage and elastic energy of polymer dispersed ferroelectric liquid crystal films. Ferroelectrics, 2000, 243, 189.
5Aplesnin S. S. Existence of massive singlet excitations in an antiferromagnetic alternating chain with S = 1/2. Phys. Rev. B, 2000, 61, 6780.
6Aplesnin S. S. The study of magnetic properties of the quasi-one-dimensional antiferromagnet with S = 1/2 by Monte-Carlo method. Phys. Low- Dim. Struct., 2000, no 9/10, 32.
7Aplesnin S. S. Static and dynamic magnetic properties of coupled spin-1/2 antiferromagnetic chains. J. Phys.: Condens. Matter, 2000,12, 8191.
8Arkhipkin V. G.,. Manushkin D. V., Timofeev V. P., Timofeev I. V. Efficient selective excitation in optically thick extensive media by adiabatic population transfer. Proc. SPIE, 2000, 3886, 699
9Arkhipkin V. G.,. Timofeev I. V. Propagation of two short pulses under conditions of electromagnetically induced transparency: adiabatic following. Proc. SPIE, 2000, 4002. 45.
10Arkhipkin V. G.,. Timofeev I. V. Pulse pair propagation under conditions of induced transparency. Proc. SPIE, 2000, 3927, 368.
11 Aver'yanov E.M. Orientation-statistical and spectral properties of impure anisotropic polymer films. Mol. Materials, 2000, 12, 721.
12Cannon E. H., Campbell D. K., Kusmartsev F. V., Alekseev K. N. Multistability, absolute negative conductivity and spontaneous current generation in semiconductor superlattices in large magnetic fields. Superlattices and Microstructures, 2000, 27, 495.
13Cannon E. H., Kusmartsev F., Alekseev K. N., Campbell D. K. Absolute negative conductivity and spontaneous current generation in semiconductor superlattices with hot electrons. Phys. Rev. Lett. 2000, 85, 1303.
14Ducourtieux S, Gresillon S, Boccara A. C., Rivoal J. C., Quelin X., Gadenne P., Drachev V. P, Bragg W. D., Safonov V. P., Podolskiy V. A., Ying Z. C., Armstrong R. L., Shalaev V. M. Percolation and Fractal Composites: Optical Studies. J. of Nonlinear Optical Physics and Materials, 2000, 9, 105.
15Flerov I. N., Gorev M. V., Sciau Ph. Heat capacity and p-T phase diagrams of the ordered perovskites Pb2MgWO6 and Pb2CoW06 .J. Phys.: Condens. Matter, 2000, 12, 559.
16Gadenne P., Quelin X., Ducourtieux S., Gresillon S., Aigouy L., Rivoal J. C., Shalaev V., Sarychev A. Direct observation of locally enhanced electromagnetic field. Physica B, 2000, 279, 52.
17George T. F., Popov A. K. Coherence-controlled transparency and far-from-degenerate parametric gain in a strongly-absorbing Doppler-broadened medium. Optics Letters, 2000, 25,1364.
18Gluck M., Hankel M., Kolovsky A. R., Korsch H. J. Induced transitions between Wannier ladder. Journal of Optics, 2000, B5.
19Gluck M., Hankel M., Kolovsky A. R., Korsch H. J. Wannier-Stark ladders in driven optical lattice. Phys. Rev. A, 2000, 61.
20Gluck M., Kolovsky A. R., Korsch H. J. About universality of lifetime statistics in quantum chaotic scattering. Physica E, 2000.
21Gluck M., Kolovsky A. R., Korsch H. J. Fractal stabilization of Wainnier-Stark resonances. Europhys. Lett., 2000, 51, 255.
22Gluck M., Kolovsky A. R., Korsch H. Resonant tunneling of Wannier-Stark states. Journal of Optics, 2000, B5.
23Ignatchenko V. A., Erementchouk M. V., Maradudin A. A. Correlation induced coupling of waves fields in disordered media. Phys. Rev. B, 2000, 62,
24Ignatchenko V. A., Mankov Yu. I., Maradudin A. A. Wave spectrum of multilayers with finite thicknesses of interfaces. Phys. Rev. B, 2000, 62, 2181.
25Jorio A., Currat R., Myles D. A. A., McIntyre G. J., Aleksandrova I. P., Kiat J. M., Saint-Gregoire P. Ferroelastic phase transition in Cs3Bi2I9: A neutron diffraction study. Phys. Rev. B, 2000, 61, 3857.
26Kuz'min E. V., Ovchinnikov S. G. Baklanov I. O. Comparison of superconductivity in Sr2RuO4 and copper oxides. Phys. Rev. B, 2000, 61, 15392.
27 Lundin U., Sandalov I., Johanson B. Mott-Hubbard transition in the N-orbital Hubbard model. Physica B, 2000, 281-282, 836.
28Lundin U., Snadalov I., Erikson O., Johanson B. Modification of the standard model for the lanthanides. Solid State Communs, 2000, 115, 7.
29 Nesterov A. I., Sabinin L. V. Non-Associative geometry and discrete structure of spacetime. Comment. Math. Univ. Caroline, 2000, 41, 347.
30Nesterov A. I., Sabinin L. V. Nonassociative geometry: towards discrete structure of spacetime. Phys. Rev. D, 2000, 62, 81501.
31 Patrin G. S.2, Volkov N. V. Polarization-dependent photoinduced change of magnetic state in the aFe2O3: Ga, Yb crystals. J. Phys.: Condens. Matter, 2000, 12, 1867.
32Petrov M. I., Balaev D. A., Shaihutdinov K. A., Aleksandrov K. S. A comparative study of transport properties of composites HTSC + MgTiO3 and HTSC + NiTiO3. The effect of paramagnetic NiTiO3. Physica C, 2000, 341-348, 1863.
33 Pichugin K., Streda P., Seba P., Sadreev A. F. Resonance behavior of the Hall-like effect induced by spin-orbit interaction in a four-terminal junction. Physica E, 2000, 6, 727.
34Popov A. K. and Baev A. S. Enhanced four-wave mixing via elimination of inhomogeneous broadening by coherent driving of quantum transitions with control fields. Phys. Rev. A, 2000, 62, 025801.
35 Popov A. K., Bayev Alexander S., George Thomas F., Shalaev Vladimir M., Four-wave mixing at maximum coherence and eliminated Doppler broadening controlled with the driving fields. Europian Physics Journal D - EPJdirect, 2000, D1, 1.
36Popov A. K., Myslivets S. A., George T. F. Inversionless gain in an optically-dense resonant Doppler-broadened medium. Opt. Express, 2000, 7, 148.
37 Popov A. K., Myslivets S. A., Gao Jin-yue, Zhang Han-zhuang, and Wellegehausen B. Inversionless gain in a three-level system driven by a strong field and collisions. Chiness physics, 2000, 9, 124.
38Potseluyko A. M., Edelman I. S., Zabluda V. N., Bolsunovskaya O. A., Zamkov A. V., Parshikov S. A., Zaytsev A. I. Magnetooptical activity of f-d electron transitions in Pr3+ in the glass matrix LiB3O5. Physica B. Condens. Matter., 2000, 291, 89.
39 Sarychev A. K. and Shalaev V. M. Electromagnetic field fluctuations and optical nonlinearities in metal-dielectric composites. Physics Reports, 2000, 335, 275.
40Sarychev A. K., McPhedran P. C., and Shalaev V. M. Electrodynamics of metal-dielectric composites and electromagnetic crystals. Phys. Rev. B, 2000, 62, 8531.
41 Seba P., Rotter I., Persson E., Pichugin K. Collective mode in an open microwave billiard. Phys. Rev. E, 2000, 61, 66.
42Shubin V. A., Sarychev A. K., Clerc J. P., and Shalaev V. M. Local electric and magnetic fields in semicontinuous metal films. Phys. Rev. B, 2000, 62.
43 Vasiliev A. D., Astachov A. M., Golubtsova O. A., Kruglyakova L. A, Stepanov R. S. Structure of 3-Nitro - 1 - nytromethyl - 1H-1,2,4- triazole. Acta Cryst., 2000, 56C, 999.
44Vtyurin A. N., Krylov A. S., Bulou A., Shmygol I. V., Aleksandrov K. S. Raman scattering study of the upper phase transition in CsScF4. J. Raman Spectr., 2000, 31, 151.
45 Vtyurin A. N., Krylov A. S., Shmygol I. V., Shebanin A. P., Ageev A. G., Goryainov S. V., Bilou A. Raman scattering study of phase transitions in CsScF4 crystal. Proc. SPIE, 2000, 4069, 53.
46Zyryanov V. Ya., Pozhidaev E. P., Smorgon S. L., Barannik A. V., Presnyakov V. V., Andreev A. L., Kompanets I. N., Weyrauch T., Haase W. Light modulation characteristics of single-polarizer PDFLC cells. Ferroelectrics, 2000, 243, 179.
47 Zyryanov V. Ya., Smorgon S. L., Barannik A. V., Pozhidaev E. P., Andreev A. L., Kompanets I. N., Haase W., Weyrauch T. Structure and electrooptic characteristics of polymer dispersed ferroelectric liquid crystals. Photonic and optoelectronic, 2000, 6, 47.


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Institute of Physics
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