磁电层状复合结构是层状铁电相与铁磁相的复合,该层状结构同时具有铁电性和铁磁性,呈现出磁电耦合效应.可以利用此复合结构制作具有磁电调、电可调双重可调特性的微波器件,拥有潜在而广阔的应用前景.主要介绍了磁电层状复合结构在微波延迟线、谐振器及移相器等方面的应用.
参考文献
[1] | 干福熹.信息材料[M].天津:天津大学出版社,2000:200. |
[2] | 万红,吴学忠,刘希从.层状复合材料磁电效应的数值分析[J].功能材料,2005(04):509-512. |
[3] | 张辉,杨俊峰,方亮,杨卫明.铁电-铁磁复合材料的研究现状及发展趋势[J].材料导报,2003(06):64-66. |
[4] | Devan R S;Chougule B K .Effect of composition on coupled electric,magnetic and dielectric properties of two phase par-ticulate rnagnetoelectric composite[J].Journal of Applied Physics,2007,101:014109. |
[5] | Yang F;Wen Y M;Li P.Magnetoelectrie response of magnetostrictive/piezoelectric/magnetostrictive laminate co-mposite[A].,2006:1010. |
[6] | Chang CM;Carman GP .Experimental evidence of end effects in magneto-electric laminate composites[J].Journal of Applied Physics,2007(12):124901-1-124901-6-0. |
[7] | Ryu J.;Uchino K.;Kim HE.;Carazo AV. .Magnetoelectric properties in piezoelectric and magnetostrictive laminate composites[J].Japanese journal of applied physics,2001(8):4948-4951. |
[8] | Okubo K.;Priye V. .A new magnetostatic wave delay line using YIG film[J].IEEE Transactions on Magnetics,1997(3):2338-2341. |
[9] | Adkins L R;Glass H I;Carter R L et al.Electronically vari-able time delays using cascaded magnetostatic delay lines[J].Journal of Applied Physics,1984,55:2518. |
[10] | Fetisov YK;Srinivasan G .Electrically tunable ferrite-ferroelectric microwave delay lines[J].Applied physics letters,2005(10):3502-1-3502-3-0. |
[11] | Kuylenstierna D;Vorobiev A;Linnet P et al.Ultrawide-band tunable true time delay lines using ferroelectric varac-tors[J].IEEE Transactions on Microwave theory and Techniques,2005,53:2164. |
[12] | Kozyrev A B;Soldatenkov O I;Ivanov A V.Electrical-ly controlled ferroelectric delay line.Microwave & Telecom-munication Technology[A].Sevastopol,Crimea,Ukraine,2003:482. |
[13] | Demidov V E;Kalinikos B A;Edenhofer P .Dipole-exchange theory of hybrid electromagnetic-pin waves in layered film structures[J].Journal of Applied Physics,2002,91:10007. |
[14] | Demidov V E;Kalinikos B A;Karmanenko S F et al.Elec-trical tuning of dispersion characteristics of surface electro-magnetic-spin waves propagating in ferrite-ferroelectric lay-ered structures[J].IEEE Transactions on Microwave theory and Techniques,2003,51:2090. |
[15] | Investigation of MW Characteristics of HTS Microstrip and Coplanar Resonators With Ferrite Thin-Film Components[J].IEEE Transactions on Microwave Theory and Techniques,2003(1):33-40. |
[16] | Koledintseva M Y;Kitaitsev A A .Modulation of millimeter waves by acoustically controlled hexagonal ferrite resonator[J].IEEE Transactions on Magnetics,2005,41:2368. |
[17] | Kim Y S et al.Ferroelectric properties of SrRuO3/BaTiO3/SrRuO3 ultrathin film capacitors free from passive layers[J].Applied Physics Letters,2006,88:072909. |
[18] | Tan C Y;Chen L F;Chong K B et al.Nondestructive micro-wave permittivity characterization of ferroelectric thin film u-sing microstrip dual resonator[J].Review of Scientific Instrumentations,2004,75:136. |
[19] | Semenov A A et al.Ferrite-ferroelectric layered structures for electrically and magnetically tunable microwave resona-tors[J].Applied Physics Letters,2006,88:033503. |
[20] | Festisov Y K;Srinivasan .Electric field tuning characteristics of a ferrite-piezoelectric microwave resonator[J].Applied Physics Letters,2006,88:143505. |
[21] | Semenov A.A.;Karmanenko S.F.;Kalinikos B.A.;Srinivasan G.;Slavin A.N.;Mantese J.V. .Dual-tunable hybrid wave ferrite-ferroelectric microwave resonator[J].Electronics Letters,2006(11):641-642. |
[22] | Ustinov AB;Tiberkevich VS;Srinivasan G;Slavin AN;Semenov AA;Karmanenko SF;Kalinikos BA;Mantese JV;Ramer R .Electric field tunable ferrite-ferroelectric hybrid wave microwave resonators: Experiment and theory[J].Journal of Applied Physics,2006(9):93905-1-93905-7-0. |
[23] | Rory K S;Magdy F I;Jar J L.Low-cost nonplanar mi-crostrip-line ferrite phase shifter utilizing circular polariza-tion[A].,2003:392. |
[24] | Hni W W G;BOll J B;Iskander M F.Low-cost micros-trip-based ferrite phase shifter utilizing circular polarization[A].,2006:4805. |
[25] | William W G Hui;Jodie M B;Magdy F et al.Low-cost mi-crostrip-line-based ferrite phase shifter desing for phased ar-ray antenna applications[J].IEEE Antennas and Wireless Propagation Letters,2007,6:86. |
[26] | Adam J Douglas;Davis Lionel E;Dionne Gerald F et al.Fer-rite devices and materials[J].IEEE Transactions on Microwave Theory and Techniques,2002,50:721. |
[27] | Deleniv A;Gevorgian S;Jantunnen H.LTCC compati-ble ferroelectric phase shifters[A].,2005:599. |
[28] | Suherman P M;Jackson T J;Tse Y Y et al.Microwave properties of Ba0.5St0.5TiO3 thin film coplanar phase shifters[J].Journal of Applied Physics,2006,99:104-101. |
[29] | Acikel B;Taylor T R;Hansen P J et al.A new high per-formance phase shifter using hasr tiothin films[J].IEEE Microwave and Wireless Components Letters,2002,12:237. |
[30] | Demidov V;Edenhofer P;Kalinikos B .Electrically tunable microwave phase shifter based on layered ferrit-ferro-electric structure[J].Electronics Letters,2001,37:1154. |
[31] | Ustinov AB;Srinivasan G;Kalinikos BA .Ferrite-ferroelectric hybrid wave phase shifters[J].Applied physics letters,2007(3):31913-1-31913-3-0. |
[32] | 熊钢,杨卫明.磁电复合材料的研究进展[J].咸宁学院学报,2004(06):75-78. |
[33] | 丁建明,仲崇贵.外电场对层状复合材料磁电效应的影响[J].苏州大学学报(自然科学版),2007(02):65-68. |
[34] | 路晓艳,刘玉岚,王彪.多重铁性材料的研究进展[J].材料导报,2007(03):17-20. |
[35] | Heindl R;Srikanth H;Witanachchi S et al.Structure,mag-netism,and tunable microwave properties of pulsed laser deposition grown barui ferrte/barium strontium titanate bi-layer films[J].Journal of Applied Physics,2007,101:09M503. |
[36] | Jaydip D;Boris A K;Arkajit R B et al.Multifunctional dual-tunabe low loss ferrite-ferroelect.ric heterostructures for mi-crowave devices[J].Applied Physics Letters,2007,91:17251. |
[37] | Quandt E;Stein S;Wuttig M .Magnetic vector field sensor using magnetoelectric thin-film composites[J].IEEE Transactions on Magnetics,2005,41:3667. |
[38] | Jackson C M .New Phase Shifters for Smart Systems[J].Proceedings of Spie,1995,2448:218. |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%