Influence of polarization of nanosized films of barium-strontium titanate on the characteristics of ferroelectric phase shifters of the microwave range

封面

如何引用文章

全文:

开放存取 开放存取
受限制的访问 ##reader.subscriptionAccessGranted##
受限制的访问 订阅存取

详细

The features of the behavior of polarization and tunability of thin ferroelectric films of barium-strontium titanate in a wide temperature range for two groups differing in production conditions are considered. An indirect connection between the tunability coefficient of film capacitors and the polarization of films has been noted.

作者简介

V. Mukhortov

Federal Research Center Southern Scientific Center of the Russian Academy of Sciences

编辑信件的主要联系方式.
Email: mukhortov1944@mail.ru
俄罗斯联邦, Rostov-on-Don, 344006

S. Biryukov

Federal Research Center Southern Scientific Center of the Russian Academy of Sciences

Email: mukhortov1944@mail.ru
俄罗斯联邦, Rostov-on-Don, 344006

Y. Golovko

Federal Research Center Southern Scientific Center of the Russian Academy of Sciences

Email: mukhortov1944@mail.ru
俄罗斯联邦, Rostov-on-Don, 344006

S. Masychev

Federal Research Center Southern Scientific Center of the Russian Academy of Sciences

Email: mukhortov1944@mail.ru
俄罗斯联邦, Rostov-on-Don, 344006

参考

  1. Вендик О.Г., Парнес М.Д. Антенны с электрическим сканированием. Введение в теорию. Сайнс-Пресс, 2002. 232 с.
  2. Romanofsky R. // Proc. IEEE Spec. Iss. Tech. Adv. Deep Space Commun. Track. 2007. V. 95. No. 10. Р. 1968.
  3. Romanofsky R., Toonen R.C. // Multidimens. Syst. Signal Process. 2018. V. 29. No. 2. P. 475.
  4. Steetr N., Damajanovic D., Eng L. et al. // J. Appl. Phys. 2006. V. 100. Art. No. 051606.
  5. Sazegar M., Zheng Y., Maune H. et al. // IEEE Trans. Microw. Theory Tech. 2011. V. 59. No. 5. Р. 1265.
  6. Haghzadeh M., Jaradat H.M., Armiento C., Akyurtlu A. // Prog. Electromag. Res. 2016. V. 62. Р. 167.
  7. Брехов К.А., Лавров С.Д., Ильин Н.А. и др. // Изв. РАН. Сер. физ. 2013. Т. 77. № 10. С. 1539.
  8. Mishra М., Das N.R., Morichetti F. // Appl. Optics. 2020. V. 59. No.14. Р. 4385.
  9. Geler-Kremer J., Eltes F., Stark P. et al. // Nature Photon. 2022. V. 16. Р. 491.
  10. Aldrigo M., Tasolamprou A.C., Vasilache D. et al. // Phys. Rev. Appl. 2023. V. 20. No. 4. Art. No. 044067.
  11. Qian Z., Zhou J., Wang H. et al. // Comput. Mater. 2023. V. 67. No. 9. Art. No. 41524.
  12. Gagarin A., Platonov R., Legkova T., Altynnikov A. // Crystals. 2021. V. 11. P. 538.
  13. Ruan H., Saunders T.G., Giddens H. et al. // J. Adv. Ceram. 2023. V. 12. No. 8. P. 1521.
  14. Abdulazhanov S., Le Q.H., Huynh D.K. et al. // ACS Appl. Electron Mater. 2023. V. 5. No. 1. Р. 189.
  15. Tumarkin A., Altynnikov A., Platonov R. et al. // Ferroelectrics. 2023. V. 612. No. 1. P. 114.
  16. Мухортов В.М., Сысоев В.К., Масычев С.И. // Ракет.-косм. приборостр. и информ. сист. 2023. Т. 10. № 3. С. 92.
  17. Мухортов В.М., Головко Ю.И., Бирюков С.В. и др. // ЖТФ. 2016. Т. 86. № 1. С. 93; Mukhortov V. M., Golovko Y. I., Biryukov S. V. et al. // Tech. Phys. 2016. V. 61. No 1. P. 91.
  18. Mishina E., Grishunin K., Bilyk V. et al. // Ferroelectrics. 2018. V. 532. Р. 199.

补充文件

附件文件
动作
1. JATS XML

版权所有 © Russian Academy of Sciences, 2024