Output Characteristics of the Axially Extracted Virtual Cathode Oscillator With a Cathode-Wing
Ki Baek Song, Jeong Eun Lim, Yoonho Seo, Eun Ha Choi
Abstract
Ki Baek Song, Jeong Eun Lim, Yoonho Seo, Eun Ha Choi
Abstract
Having the merits of conceptual simplicity, high-output-power capacity, and wide tuning characteristics, the vircator (virtual cathode oscillator) has been investigated as a high-power microwave (HPM) generator. In axial vircator, the power, frequency, and pulsewidth are all sensitive to the cathode shape, and the frequency depends strongly on the anode-cathode gap distance. The efficiency of the vircator is reported to only a few percent. Therefore, we devised the new type cathode to enhance the output power. The new type cathode is adding the ring to the cathode with velvet, so-called cathode-wing. The electron beam is only emitted from cathode with velvet, while a cathode-wing forms the electric fields to prevent the backstream electrons due to virtual cathode from leaking to the diode chamber wall. We investigated the axial vircator with the cathode-wing by the HPM generator ldquoChundoongrdquo (max 600 kV, 88 kA, 60 ns). It is found that the cathode-wing contributes to enhancement of the output microwave power efficiency to 7% in comparison with 3% for a conventional axial vircator without cathode-wing.
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Having the merits of conceptual simplicity, high-output-power capacity, and wide tuning characteristics, the vircator (virtual cathode oscillator) has been investigated as a high-power microwave (HPM) generator. In axial vircator, the power, frequency, and pulsewidth are all sensitive to the cathode shape, and the frequency depends strongly on the anode-cathode gap distance. The efficiency of the vircator is reported to only a few percent. Therefore, we devised the new type cathode to enhance the output power. The new type cathode is adding the ring to the cathode with velvet, so-called cathode-wing. The electron beam is only emitted from cathode with velvet, while a cathode-wing forms the electric fields to prevent the backstream electrons due to virtual cathode from leaking to the diode chamber wall. We investigated the axial vircator with the cathode-wing by the HPM generator ldquoChundoongrdquo (max 600 kV, 88 kA, 60 ns). It is found that the cathode-wing contributes to enhancement of the output microwave power efficiency to 7% in comparison with 3% for a conventional axial vircator without cathode-wing.
Key concepts: Vircator, Cathode, Cathode ray, Anode, Cold cathode, Optics, Diode, Microwave