A new method to generate ultrahigh-power microwave pulses compatible with mildly relativistic electron sources is proposed. This method involves a novel microwave compressor in the form of a metal helically corrugated waveguide, which can enhance the power of frequency-modulated nanosecond pulses up to the multi-gigawatt level. The results of the proof-of-principle experiments at kilowatt power levels are in good agreement with theory
X-band passive microwave pulse compression is an interesting area of research in vacuum electronics....
Waveguides with a helical corrugation on the inner surface have proven an effective dispersive mediu...
This paper describes the use of a helically corrugated waveguide as a dispersive medium for microwav...
A new method to generate ultrahigh-power microwave pulses compatible with mildly relativistic electr...
A new method to generate ultrahigh-power microwave pulses compatible with mildly relativistic electr...
The use of a helically corrugated waveguide as a dispersive medium for microwave pulse compression w...
The paper presents new results on the development of a method to generate ultrahigh-power short-micr...
Summary form only given. There has been a drive in recent years to produce ultra-high power short pu...
We show theoretically that the use of a circular oversized waveguide with a helically corrugated int...
Microwave pulse compression is an important area of research in vacuum electronics, with important a...
Metal waveguide can be used as a dispersive medium to convert long duration, lower power pulses into...
Cylindrical waveguide with a helical corrugation on the inner surface has proven an effective disper...
X-band passive microwave pulse compression is an interesting area of research in vacuum electronics....
Microwave pulse compression results from a five-fold helically corrugated waveguide are presented. I...
X-band passive microwave pulse compression is an interesting area of research in vacuum electronics....
Waveguides with a helical corrugation on the inner surface have proven an effective dispersive mediu...
This paper describes the use of a helically corrugated waveguide as a dispersive medium for microwav...
A new method to generate ultrahigh-power microwave pulses compatible with mildly relativistic electr...
A new method to generate ultrahigh-power microwave pulses compatible with mildly relativistic electr...
The use of a helically corrugated waveguide as a dispersive medium for microwave pulse compression w...
The paper presents new results on the development of a method to generate ultrahigh-power short-micr...
Summary form only given. There has been a drive in recent years to produce ultra-high power short pu...
We show theoretically that the use of a circular oversized waveguide with a helically corrugated int...
Microwave pulse compression is an important area of research in vacuum electronics, with important a...
Metal waveguide can be used as a dispersive medium to convert long duration, lower power pulses into...
Cylindrical waveguide with a helical corrugation on the inner surface has proven an effective disper...
X-band passive microwave pulse compression is an interesting area of research in vacuum electronics....
Microwave pulse compression results from a five-fold helically corrugated waveguide are presented. I...
X-band passive microwave pulse compression is an interesting area of research in vacuum electronics....
Waveguides with a helical corrugation on the inner surface have proven an effective dispersive mediu...
This paper describes the use of a helically corrugated waveguide as a dispersive medium for microwav...