1991
DOI: 10.1109/22.83822
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Superconducting millimeter-wave E-plane filters

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Cited by 14 publications
(2 citation statements)
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“…Since the software we are using assumes an ideal conductor for HTS thin films, we should not expect the current distribution simulation to be exactly correct. However, we have shown in the past that EM simulators using ideal conductor models can accurately predict the electrical performance of HTS thin film filters operating at low power [9]- [11]. We are sure that the true physics of HTS materials should affect the current distribution under both low-and high-power operation, but these differences are negligible during low power operation.…”
Section: Discussion Of the Experimental Resultsmentioning
confidence: 99%
“…Since the software we are using assumes an ideal conductor for HTS thin films, we should not expect the current distribution simulation to be exactly correct. However, we have shown in the past that EM simulators using ideal conductor models can accurately predict the electrical performance of HTS thin film filters operating at low power [9]- [11]. We are sure that the true physics of HTS materials should affect the current distribution under both low-and high-power operation, but these differences are negligible during low power operation.…”
Section: Discussion Of the Experimental Resultsmentioning
confidence: 99%
“…The introduction of HTS elements in the filter resonators increases the unloaded Q, therefore, should reduce insertion loss. The idea of the application of HTS materials in the waveguide E-plane BPF was expressed earlier, e.g., in [1], where the authors proposed to cover the waveguide internal walls with the bulk HTS material or to replace the normal metal E-plane insert by HTS one. This idea was advanced in [2] while creating two-pole X-band filter with HTS E-insert.…”
mentioning
confidence: 99%