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| 1 | Mechanism of frost heave by film water migration under temperature gradient显示文摘IT is well known that there exists unfrozen film water in frozen soils due to the action of sur-face energy among soil particles and frost heave occurs by water migration under the tempera-ture gradient. The problem is how to determine the amount of frost heave quantitatively. The amount of frost heave induced by ice segregation can be calculated by the following e-quations: | Xu, XZ Wang, JC Zhang, LX Deng, YS Chuvilin, EM Yershov, ED Ishizaki, T Fukuda, M | 1997 | Chinese Science Bulletin1997,42,15: | 6 |
| 2 | Enhanced magnetic modulation of light polarization exploiting hybridization with multipolar dark plasmons in magnetoplasmonic nanocavities显示文摘Enhancing magneto-optical effects is crucial for reducing the size of key photonic devices based on the non-reciprocal propagation of light and to enable active nanophotonics.Here,we disclose a currently unexplored approach that exploits hybridization with multipolar dark modes in specially designed magnetoplasmonic nanocavities to achieve a large enhancement of the magneto-optically induced modulation of light polarization.The broken geometrical symmetry of the design enables coupling with free-space light and hybridization of the multipolar dark modes of a plasmonic ring nanoresonator with the dipolar localized plasmon resonance of the ferromagnetic disk placed inside the ring.This hybridization results in a low-radiant multipolar Fano resonance that drives a strongly enhanced magneto-optically induced localized plasmon.The large amplification of the magneto-optical response of the nanocavity is the result of the large magneto-optically induced change in light polarization produced by the strongly enhanced radiant magneto-optical dipole,which is achieved by avoiding the simultaneous enhancement of reemitted light with incident polarization by the multipolar Fano resonance.The partial compensation of the magnetooptically induced polarization change caused by the large re-emission of light with the original polarization is a critical limitation of the magnetoplasmonic designs explored thus far and that is overcome by the approach proposed here. | Alberto Lopez-Ortega Mario Zapata-Herrera Nicolo Maccaferri Matteo Pancaldi Mikel Garcia Andrey Chuvilin Paolo Vavassori | 2020 | Light(Science & Applications)2020,9,1: | 2 |
| 3 | Gas and possible gas hydrate in the permafrost of Bovanenkovo gas field,Yamal peninsula,West Siberia显示文摘 | Chuvilin E M Yakushev V S Perlova E V | 1998 | Polarforschung1998,68,4: | 1 |
| 4 | Decomposition of methane hydrates in sand,sandstone,clays,and glass beads显示文摘 | Uchida T Takeya S Chuvilin E M | | 0,,: | 1 |
| 5 | Gas and possible gas hydrate in the permafrost of t3ovanenkovo gas field Yamal peninsula, West Siberia显示文摘 | Chuvilin E M Lee M W Agena W F Miller J J | 1999 | Polarforschung1999,68,: | 1 |
| 6 | Onion-like carbon from ultra-disperse diamond显示文摘 | Kuznetsov V L Chuvilin A L Butenko Y V | 1994 | Chem Phys Lett1994,222,: | 1 |
| 7 | Natural gas and gas hydrate accumulations within permafrost in Russia 显示文摘 | Yakushev V S Chuvilin E M | 2000 | Cold Regions Science and Technology2000,31,: | 1 |
| 8 | Onion-like carbon from ultra-disperse diamond 显示文摘 | Kuznetsov V L Chuvilin A L Butenko Y V | 1994 | Chem Phys Lett1994,222,4: | 1 |
| 9 | 显示文摘 | Chuvilin A L Moroz E M | 1994 | Carbon1994,32,5: | 1 |
| 10 | Effect of explosion conditions on the structure of detonation soots:ultradisperse diamond and onion carbon显示文摘 | Chuvilin A L Moroz E M | 1994 | Carbon1994,32,5: | 1 |
| 11 | Ex- perimental study of gas hydrate formation in porous media 显示文摘 | CHUVILIN E M YAKUSHEV V S PERLOVA E V | 1999 | VNIIGAN1999,,9: | 1 |
| 12 | Fluorinated cage multiwall carbon nanopartecles显示文摘 | OKOTRUB A V YUDANOV N F CHUVILIN A L ASANOV I P SHUBIN YU V BULUHEVA LG GUSELNIKOV A V FYODOROV I S | 2000 | Chemical Physics Letters2000,322,: | 1 |
| 13 | Effect of explosion condition on the structure of detonation soots: Ultradisperse diamond and onion carbon显示文摘 | Kuzentsov V L Chuvilin A L | 1994 | Carbon1994,32,5: | 1 |
| 14 | Grain refinement and mechanical properties in ultrafine grained Pd and Pd–Ag alloys produced by HPT显示文摘 | L. Kurmanaeva Yu. Ivanisenko J. Markmann C. Kübel A. Chuvilin S. Doyle R.Z. Valiev H.-J. Fecht | 2009 | Materials Science & Engineering A2009,,7: | 1 |
| 15 | Natural gas and gas hydrate ac cumulations within permafrostin Russia显示文摘 | Yakushev V S Chuvilin E M | 2000 | Cold Regions Sci ence and Technology2000,31,3: | 1 |
| 16 | Decomposition of Methane over Iron Catalysts at the Range of Moderate Temperatures: The Influence of Structure of the Catalytic Systems and the Reaction Conditions on the Yield of Carbon and Morphology of Carbon Filaments显示文摘 | Ermakova M A Ermakov D Y Chuvilin A K Kuvshinov G G | | 0,,: | 1 |
| 17 | Effects oftemperature cycling on the phase transition of water ingas-saturated sediments 显示文摘 | Chuvilin E M Ebinuma T Kamata Y | 2003 | Canadian Journal of Physics2003,81,12: | 1 |
| 18 | Catalytic filamentous carbon Structural and textural properties显示文摘 | Reshetenko T V Avdeeva L B Ismagilov Z R Chuvilin A L Ushakov V A | | 0,,: | 1 |
| 19 | Natural gas and gas hydrate accumulations within permafrost in Russia 显示文摘 | Yakushev V S Chuvilin E M | 2000 | Cold Regions Science and Technology2000,31,: | 1 |
| 20 | Onion-like carbon from ultra-disperse diarnond显示文摘 | Kuznetsov V L Chuvilin A L | 1994 | Chem Phys Lett1994,222,4: | 1 |