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16篇 您的检索式:作者名="Magnitskiy"
    题名 作者 年代 出处 被引量
1High-density three-dimensional optical data storage with photonic band-gap structures显示文摘Koroteev N I Magnitskii S A Tarasishin A V 1999Laser Phys1999,9,6:1
2Some new approaches to the construction and learning of artificial neural networks显示文摘Magnitskii N A 2001Computational Mathematics and Modeling2001,12,4:1
3Compression of light pulses in photonic crystals显示文摘ZHELTIKOV A M KOROTEEV N I MAGNITSKII S A 1998Quantum Electronics1998,28,10:1
4Evolution of ultrashort light pulses in a two- level medium visualized with the finite -difference time domain technique 显示文摘Tarasishin A Magnitskii S Shuaev V 2001Opt Express2001,8,7:1
5High performance imaging of relativistic soft X‐ray harmonics by sub‐micron resolution LiF film detectors显示文摘Tatiana Pikuz Anatoly Faenov Alexander Pirozhkov Artem Astapov Georgy Klushin Sergey Pikuz Nikolai Nagorskiy Sergei Magnitskiy Timur Esirkepov James Koga Tatsufumi Nakamura Sergei Bulanov Yuji Fukuda Yukio Hayashi Hideyuki Kotaki Yoshiaki Kato Masaki Kand 2012Phys. Status Solidi C2012,,12:1
6Xray spectroscopic study of stopping dynamics for Ca6+ ion in an aerogel target显示文摘ROSMEJ O N PIKUZ S A MAGNITSKII S A 2003JETP Letters2003,78,6:1
7Some new approaches to the construction and learning of artificial neural networks显示文摘Magnitskii N A 2001Computational Mathematics and Modeling2001,12,4:1
8Evolution of ultrashort light pulses in a two-level medium visualized with the fi- nite-difference time domain technique显示文摘Tarasishin A Magnitskii S Shuaev V 2001Opt Express2001,8,7:1
9Early control of seedling growth by treating seeds with growth regulators显示文摘Magnitskiy S Pasian C Bennett M 2001Department of Horticul- ture and Crop Science2001,,:1
10Some new approaches to the construction and learning of artificial neural networks显示文摘Magnitskii N A 2001Computational Mathematics and Modeling2001,12,4:1
11Some new approaches to the construction and learning of artificial neural networks显示文摘Magnitskii N A 2001Computational Mathematics and Modeling2001,12,4:1
12Silicon photonic band gap structures controlling light pulses and beams显示文摘Aristov V V Magnitskii S A Starkov V V 1999Laser Phys1999,9,6:1
13Macropores in silicon: toward three-dimensional photonic band-gap structures显示文摘Aristov V V Magnitskii S A Starkov V V 2000Laser Phys2000,10,4:1
14Compression of ultrashort light pulses inphotonic crystals: when envelopes cease to be slow显示文摘Koroteev N I Magnitskii S A Tarasishin A V 1999Opt Commun1999,159,:1
15Distribution of iron, manganese, and zinc in mature grain and their mobilization during germination and early seedling development in maize 显示文摘Bityutskii N P Magnitskiy S V Korobeynikova L P 2002J Plant Nutr2002,25,3:1
16Coherent X-ray mirage: discovery and possible applications显示文摘In the far field of the intensity distribution of the beam delivered by a two-stage transient–collisional excitation X-ray laser(XRL), a non-expected interference pattern that is stable from shot to shot has been discovered. It is demonstrated that the interference is caused by the emergence of an imaginary source in the amplifying plasma, which is phase matched to the radiation of the generator. The observed phenomenon is called an X-ray coherent mirage. To explain the obtained results, a new theoretical approach is developed. The basic essential conditions for formation of the X-ray mirage are formulated, and possible applications are discussed. This paper details the experiments, including the formulation of the necessary and sufficient conditions for formation of the X-ray mirage, and possible applications are discussed.Tatiana Pikuz Anatoly Faenov Sergey Magnitskiy Nikolay Nagorskiy Momoko Tanaka Masahiko Ishino Masaharu Nishikino Yuji Fukuda Masaki Kando Yoshiaki Kato Tetsuya Kawachi 2014High Power Laser Science and Engineering2014,2,2:0
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