Microwave wave generator device with a virtual cathode oscillator and axial geometry, comprising at least one reflector and a magnetic ring, configured to be supplied by a high-impedance generator
View Patent ↗A microwave wave generator device with oscillating virtual cathode, with axial geometry, includes at least one first reflector positioned in a cylindrical waveguide downstream of a thin anode, positioned at the entrance of the cylindrical waveguide, between a cathode and the cylindrical waveguide. The device further includes a tight magnetic ring of width (L M ) along the longitudinal axis (z), positioned externally around the cylindrical waveguide, between the thin anode and the first reflector.
1. A microwave wave generator device with a virtual cathode oscillator and axial geometry, the device comprising
a cathode, a thin anode and a cylindrical wave guide, of longitudinal axis (z) and radius (R G ), having a first end forming an entrance to the cylindrical wave guide and a second end forming an exit from the cylindrical wave guide, the cathode upstream of the entry to the cylindrical wave guide and configured to emit electrons, and the thin anode at the entrance to the cylindrical wave guide, between the cathode and the cylindrical wave guide, and
further comprising at least a first reflector in the wave guide, transparent to electrons and configured to reflect a microwave wave created by at least one virtual cathode generated in the wave guide,
the device further comprising a narrow magnetic ring of width (L M ) along the longitudinal axis (z), externally around the cylindrical wave guide at a distance (d AM ) from the thin anode and with the first reflector at a distance (d AF1 ) from the thin anode beyond the magnetic ring, such that the magnetic ring is between the thin anode and the first reflector, wherein the magnetic ring is configured to generate a magnetic field adapted to brake the electrons and to create an accumulation of charge at the origin of a non-oscillating virtual cathode between the thin anode and the first reflector.
2. The device according to claim 1 , wherein the distance (d AM ) separating the magnetic ring from the thin anode along the longitudinal axis (z) is equal to or greater than a distance (d AK ) separating the cathode from the thin anode.
3. The device according to claim 1 , wherein the distance (d AF1 ) separating the first reflector from the thin anode is equal to or greater than the sum of the distance (d AM ), separating the magnetic ring from the thin anode, and the width (L M ) of the magnetic ring.
4. The device according to claim 1 , wherein the distance (d AF1 ) separating the first reflector from the thin anode is equal to or greater than approximately twice the distance (d AK ) separating the cathode from the thin anode.
5. The device according to claim 1 , wherein at least the first reflector, in the wave guide, is an open reflector.
6. The device according to claim 1 , further comprising a plurality of successive reflectors in the cylindrical wave guide.
7. The device according to claim 6 , wherein two successive reflectors of the plurality of reflectors are separated from each other by a distance (d Fi-1Fi ) equal to or less than approximately twice a distance (d AK ) separating the cathode from the thin anode.
8. The device according to claim 6 , wherein all the reflectors are open and have a same radius (R Ri ).
9. The device according to claim 1 , wherein the device comprises three reflectors positioned in the wave guide.