HTS/ferroelectric devices for microwave applications
High Temperature Superconducting (HTS, e.g. YBCO) microwave devices based on bulk or thin film ferroelectrics (e.g. Strontium Titanate-STO) are studied theoretically and experimentally. YBCO/STO/YBCO parallel-plate resonators and based on bulk single crystal STO are for electrically tunable high pow...
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Published in | IEEE transactions on applied superconductivity Vol. 7; no. 2; pp. 2458 - 2461 |
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Main Authors | , , , , , , |
Format | Journal Article |
Language | English |
Published |
IEEE
01.06.1997
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Abstract | High Temperature Superconducting (HTS, e.g. YBCO) microwave devices based on bulk or thin film ferroelectrics (e.g. Strontium Titanate-STO) are studied theoretically and experimentally. YBCO/STO/YBCO parallel-plate resonators and based on bulk single crystal STO are for electrically tunable high power filters, phase shifters and other devices in the frequency band 0.5-2.0 GHz of advanced microwave communication systems. Thin film YBCO/STO Inter-digital Capacitors (IDC), Coplanar Waveguides (CPW) phase shifters/delay lines are also designed and studied experimentally for low microwave power applications. Modelling problems of these devices and microwave losses in ferroelectrics are also discussed. |
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AbstractList | High Temperature Superconducting (HTS, e.g. YBCO) microwave devices based on bulk or thin film ferroelectrics (e.g. Strontium Titanate-STO) are studied theoretically and experimentally. YBCO/STO/YBCO parallel-plate resonators and based on bulk single crystal STO are for electrically tunable high power filters, phase shifters and other devices in the frequency band 0.5-2.0 GHz of advanced microwave communication systems. Thin film YBCO/STO Inter-digital Capacitors (IDC), Coplanar Waveguides (CPW) phase shifters/delay lines are also designed and studied experimentally for low microwave power applications. Modelling problems of these devices and microwave losses in ferroelectrics are also discussed. High Temperature Superconducting (HTS, e.g. YBCO) microwave devices based on bulk or thin film ferroelectrics (e.g. Strontium Titanate-STO) are studied theoretically and experimentally. YBCO/STO/YBCO parallel-plate resonators and based on bulk single crystal STO are for electrically tunable high power filters, phase shifters and other devices in the frequency band 0.5-2.0 GHz of advanced microwave communication systems. Thin film YBCO/STO Inter-digital Capacitors (IDC), Coplanar Waveguides (CPW) phase shifters/delay lines are also designed and studied experimentally for low microwave power applications. Modelling problems of these devices and microwave losses in ferroelectrics are also discussed |
Author | Carlsson, E.F. Helmersson, U. Vendik, O.G. Wikborg, E. Rudner, S. Gevorgian, S.S. Kollberg, E.L. |
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BackLink | https://research.chalmers.se/publication/212535$$DView record from Swedish Publication Index |
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References | ref13 vendik (ref6) 1994; 36 ref12 ref15 ref20 ref11 gevorgian (ref14) 1995 ref10 wikborg (ref19) 1996 vendik (ref1) 1993; 144 ref17 ref16 ref8 ref7 ref9 gevorgian (ref18) 1996; 143 ref4 imai (ref2) 1993; e76 c ref3 ref5 |
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SubjectTerms | Coplanar waveguides Coplanar waveguides Ferroelectric devices Ferroelectric materials High temperature superconductors Microwave devices Phase shifters Superconducting filters Superconducting microwave devices Superconducting thin films Yttrium barium copper oxide Ferroelectric devices Ferroelectric materials High temperature superconductors Microwave devices Phase shifters Superconducting filters Superconducting microwave devices Superconducting thin films Yttrium barium copper oxide |
Title | HTS/ferroelectric devices for microwave applications |
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