Bifilar Helix for Backward-Wave Oscillators
P. K. Tien
Abstract
P. K. Tien
Abstract
A bifilar helix used as the slow wave circuit for the backward-wave oscillator is investigated in this paper. Calculations show that the bifilar helix has a higher impedance than that of the ordinary single-wire helix. The propagating characteristics of the bifilar helix are analyzed and some experimental results of cold measurements are presented. It is also shown that with a bifilar helix, a periodic electrostatic field which can be used to focus the electron stream is readily obtained by applying a proper dc potential difference between two helical wires. The same bifilar structure may thus be used both for the propagating and for the focusing circuit. A tube of this kind has been constructed and the experimental results are described.
OpenAlex reports 26 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
A bifilar helix used as the slow wave circuit for the backward-wave oscillator is investigated in this paper. Calculations show that the bifilar helix has a higher impedance than that of the ordinary single-wire helix. The propagating characteristics of the bifilar helix are analyzed and some experimental results of cold measurements are presented. It is also shown that with a bifilar helix, a periodic electrostatic field which can be used to focus the electron stream is readily obtained by applying a proper dc potential difference between two helical wires. The same bifilar structure may thus be used both for the propagating and for the focusing circuit. A tube of this kind has been constructed and the experimental results are described.
Key concepts: Bifilar coil, Helix (gastropod), Traveling-wave tube, Physics, Rogowski coil, Current (fluid), Optoelectronics, Snail