维普中文期刊产品整合服务
94篇 您的检索式:作者名="Zuev"
    题名 作者 年代 出处 被引量
1掺硫硒化镓晶体在太赫兹波段的光学特性显示文摘利用太赫兹时域光谱技术测量了掺硫硒化镓(GaSe1-xSx)晶体在太赫兹波段的光学参数,包括折射系数、吸收系数等。使用自由空间电光取样法获得了太赫兹电磁波的脉冲波形,对不同硫掺杂量的硒化镓晶体进行了研究,在硫的掺杂量为0,0.01,0.14,0.26,0.37时,在0.22.0 THz测得了GaSe1-xSx的折射系数、吸收系数等光学参数。此外还在吸收光谱上观察到E′^(2)和E″^(2)两个声子振动模态,其强度与频率会随着硫的掺杂量而改变,且即使是微量的硫掺杂也会影响吸收光谱上的声子振动模态。最后,在相位匹配ee-e的条件下,模拟了利用锁模钛蓝宝石激光使此类晶体产生太赫兹辐射的可能性。罗志伟 古新安 朱韦臻 唐维聪 ANDREEV YURY LANSKII Grigory MOROZOV Alexander ZUEV Vladimir 2011光学精密工程2011,19,2:10
2掺碲硒化镓晶体的光学性能(英文)显示文摘采用水平区熔法生长了碲(Te)掺杂浓度(质量百分比)分别为0.05%,0.1%,0.5%,1%,2%的硒化镓(GaSe)晶体,并分别对掺杂浓度为0.01%,0.07%,0.38%,0.67%,2.07%的GaSe∶Te晶体的光学性能进行了表征。首次研究了GaSe∶Te晶体中刚性层声子模式的转换。吸收光谱测试结果表明:当Te掺杂浓度小于0.38%时,振动中心位于0.59 THz附近的E'(2)刚性模式吸收峰强度可达最大值,这一过程与GaSe∶Te晶体光学性能的提高密切相关。但Te掺杂浓度的进一步提高会导致E'(2)刚性模式吸收峰强度逐渐减弱,当Te掺杂浓度为1%时,E'(2)刚性模式吸收峰基本消失。这两个过程与GaSe∶Te晶体光学质量的下降密切相关。因此,E'(2)刚性模式吸收强度达到最高时对应的掺杂浓度即是GaSe∶Te晶体中Te的最佳掺杂浓度,光整流产生太赫兹过程证实了此结论的正确性。古新安 朱韦臻 罗志伟 ANDREEV Y M LANSKII G V SHAIDUKO A V IZAAK T I SVETLICHNYI V A VAYTULEVICH E A ZUEV V V 2011中国光学2011,4,6:3
3Internet Traffic Classification Using Bayesian Analysis显示文摘Moore A Zuev D 2005ACM SIGMETRICS Performance Evaluation Review2005,33,1:1
4Functional analysis of OMICs data and small molecule compounds in an integrated 'knowledge-based' platform显示文摘Nikolsky Y Kirillow E Zuev R 2009Methods Mol Biol2009,563,:1
5The self-excited wave nature of the instability and localization of plastic deformation显示文摘Zuev L B Danilov V I Kartashova N V Barannikova S A 1997Materials Science and Engineering1997,,:1
6Traffic classification using a statistical approach 显示文摘Zuev D and Moore A 2005Lecture Notes in Computer Science2005,3431,:1
7Geometric insight into the challenges of solving high-dimensional reliability problems显示文摘Katafygiotis L S Zuev K M 2008Probabilistic Engineering Mechanics2008,23,2:1
8Atmospheric temperature measurements using a pure rotation Raman lidar显示文摘Arshinov Yu F Bobrovnikov S M Zuev V E 0,,19:1
9Drop-Spark Discharge:an Atomization and Excitation Source for Atomic Emission Sensors显示文摘Yagov V V Korotkov A S Zuev B K 1998Mendeleev Communications1998,4,:1
10XeF laser with optically pumping by surface discharge显示文摘Zuev V S Kashnikov G N Mamaev S B 1992Sov J Quantum Electron1992,22,11:1
11Basic problems in the fluoride method of reprocessing fast-reactor fuel elements显示文摘Veryatin Y D Galkin N P Zuev V A 1971Atomnaya Energiya1971,31,4:1
12显示文摘Zuev V V Ivanova Y G 2011Polymer Engineering and Science2011,10,:1
13The catalytic isomerization of terminal carbon-carbon double bonds in Liquid crystalline polyesters at hydrosilation with 1-(1 '-Arylethoxy)- 1,1,3,3-tetramethyl显示文摘ZUEV V V VEKKI D A 2006Phosphorus Sulfur Silicon Relat Elem2006,181,9:1
14Discharge on Boiling in a Channel as a New Atomization and Excitation Source for the Flow Determination of Metals by Atomic Emission Spectrometry显示文摘Zuev B K Yagov V V Getsina M L 2002Journal of Analytical Chemistry2002,57,10:1
15Internet traffic classification using bayesian analysis techniques显示文摘MOORE A W ZUEV D 0,,01:1
16Discharge in Liquids as a Spectral Source of Radiation:Effect of the Supporting Electrolyte on the Intensity of Metal Lines显示文摘Zuev B K Yagov V V Grachev A S 2008Journal of Analytical Chemistry2008,63,6:1
17Discharge on Boiling in a Channel:Effect of Channel Geometry on the Performance Characteristics of Determining Metals in a Liquid Flow by Atomic Emission Spectrometry显示文摘Zuev B K Yagov V V Grachev A S 2006Journal of Analytical Chemistry2006,61,12:1
18The use of intraopera- tire sonography in surgical treatment of brain tumors显示文摘Vasilev SA Zuev AA Fisenko EP 2010Khiurgi- ia (Mosk)2010,,2:1
19The horseracing simulation algorithm for evaluation of small failure probabilities显示文摘Zuev K M Katafygiotis L S 2011Probabilistic Engineering Mechanics2011,26,2:1
20Defect structure and isothermal expansion of A- site and B- site substituted lanthanum chromites显示文摘Zuev A Singheiser L Hilpert K 2002Solid State Ionics2002,147,12:1
返回顶部 每页显示:
共5页 首页 上一页 第1页 下一页 末页 /5 跳转

网站首页 | 关于我们 | 联系我们 | 产品服务 | 客服中心 | 广告服务 | 版权声明 | 网站联盟 | 友情链接 | 售卡网点

版权所有© 渝B2-20050021-1 渝公网安备 50019002500403号 违法和不良信息举报中心

互联网出版许可证 新出网证(渝)字10号 全国400电话 - 免长途话费