维普中文期刊产品整合服务
205篇 您的检索式:作者名="Andreev A"
    题名 作者 年代 出处 被引量
1GaSe:AgGaSe_2晶体的光学性能及应用(英文)显示文摘从GaSe:AgGaSe2熔体(质量掺杂浓度为10%)中生长的非线性光学晶体ε-GaSe:Ag晶体(质量掺杂浓度≤0.04%)是一种非中心对称晶体,可用于相位匹配频率转换。Ag的掺入使GaSe晶体的显微硬度提高了30%,从而使其可以在任意方向上进行切割和抛光。本文研究了GaSe:AgGaSe2晶体在可见、中红外及太赫兹波段的光学性能。实验证明:GaSe:AgGaSe2晶体的吸收系数是纯GaSe晶体的2倍,其CO2激光倍频效率是ZnGeP2晶体的1.7倍。古新安 朱韦臻 罗志伟 ANGELUTS A A EVDOKIMOV M G NAZAROV M M SHKURINOV A P ANDREEV Y M LANSKII G V SHAIDUKO A V KOKH K A SVETLICHNYI V A 2012中国光学2012,5,1:5
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
3Installation for Separation of Hydrogen Isotopes by the Method of Chemical Isotopic Exchange in the ''Water-hydrogen'' System显示文摘Andreev B M Sakharovsky Y A Rozenkevich M B 1995Fusion Technol1995,28,:2
4Peripheral vascular effects of thiopental and propofol in humans with artificial hearts显示文摘Rouby JJ Andreev A Leger P 1991Anesthesiology1991,75,1:1
5Gas Chromato- graphic Determination of Polychlorophenols after Derivatiza- tion with Monochloroacetic Anhydride显示文摘ANDREEV Y A CHERNOV' YANTS M S 2010Journal of Analyti- cal Chemistry2010,65,10:1
6Alcohol poisoning in Russia and the countries in the European part of the former Soviet Union, 1970-2002 显示文摘Stickley A Lcinsalu M Andreev E 2007European Journal of Public Health2007,17,5:1
7Peripheral vascular effects of thiopental and propofol in humans with artificial hearts 显示文摘 Andreev A Leger P 1991Anesthesiology1991,75,:1
8Kinetics and mechanism of 4-nitrotoluene oxidation with ozone in an acetic acid solution in the presence of a metal-bromide catalyst显示文摘Galstyan A G Tyupalo N F Andreev P Y 2003Kinetics and Catalysis2003,44,1:1
9Thermal expansion anomalies and spontaneous magnetostriction in R2 Felt C intermetallic compounds 显示文摘Andreev A V De Boer F R Jacobs T H 1991Physica B1991,175,:1
10A new structural state in melt-spun Nd-Fe-B alloys 显示文摘Pamyatnykh L A Pushkarsky V I Andreev S V Korznikova G F 1995Journal of Alloys and Compounds1995,226,:1
11Backscattering of ultrashort high intensity laser pulses from solid targets at oblique incidence显示文摘Andreev A A Platonov K Y Salomaa R R E 2002Phys Plasmas2002,9,2:1
12The thermal conductivity of the intermediate state in superconductor 显示文摘ANDREEV A F 1964Sovi Phys JETP1964,19,5:1
13On a method for obtaining lower bounds for the complexity of individual monotone functions显示文摘ANDREEV A E 1985Soviet Mathematics Doklady1985,31,:1
14Concentrator PV modules and solar cells for TPV systems显示文摘Andreev V M Grilikhes V A 2004Solar Energy Materials and Solar Cells2004,84,14:1
15UV photodetectors in 6H-SiC 显示文摘 Andreev A N Pyatko S N 1992Sensors & Actuators A-Physical1992,33,12:1
16Conge- lation of cryoprotective solutions and cryopreservation of fish sperm 显示文摘ANDREEV A A GAKHOVA E N PASHOVKIN T N 2009Biofizika2009,54,5:1
17The thermal conductivity of the intermediate state in superconductors显示文摘Andreev A F 1964Sov Phys JETP1964,19,5:1
18Kinetics and Mechanism of Cubic Boron Nitride Formation in the A INBN System at 6 GPa 显示文摘Turkevich V Taniguchi T Andreev A 2004Diam Relat Mater2004,13,:1
19Study of the surface barrier discharge generated by electrodes in the form of a series of parallel metal strips 显示文摘Andreev V V Vasilyeva L A 2013Plasma Physics Reports2013,39,13:1
20The center-focus problem for a system with homogeneous nonlinearities in the case of zero eigenvalues of the linear part 显示文摘Andreev A F Sadovskii A P Tsikalyuk V A 2003Differential Equations2003,39,:1
返回顶部 每页显示:
共11页 首页 上一页 第1页 下一页 末页 /11 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