1995Unpublished venueRequires access

Conditioning and simulations for the one-microsecond, one kilojoule per-pulse L-band relativistic klystron

W.B. Haynes, B.E. Carlsten, M.V. Fazio, R. Stringfield

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Abstract

Summary form only given, as follows. The development of a high-current relativistic klystron amplifier (RKA) is continuing at Los Alamos. The goal is to produce 1 kJ per pulse, with a one-microsecond pulsewidth, and a peak power of 1 GW. The three cavity tube has already produced pulses with more than 150 J and over 450 MW peak power: The output power has been limited by breakdown In the output cavity. A novel scheme for ex-situ conditioning of the output cavity gap pieces is being developed. A specialized cavity with a high Q, that holds the gap pieces in the same geometry as in the tube, is used in conjunction with a high power commercial klystron to field condition the surfaces. Results from this work and recent PIC code simulations will be presented.

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What this paper is about

Summary form only given, as follows. The development of a high-current relativistic klystron amplifier (RKA) is continuing at Los Alamos. The goal is to produce 1 kJ per pulse, with a one-microsecond pulsewidth, and a peak power of 1 GW. The three cavity tube has already produced pulses with more than 150 J and over 450 MW peak power: The output power has been limited by breakdown In the output cavity. A novel scheme for ex-situ conditioning of the output cavity gap pieces is being developed. A specialized cavity with a high Q, that holds the gap pieces in the same geometry as in the tube, is used in conjunction with a high power commercial klystron to field condition the surfaces. Results from this work and recent PIC code simulations will be presented.

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Available abstract

Summary form only given, as follows. The development of a high-current relativistic klystron amplifier (RKA) is continuing at Los Alamos. The goal is to produce 1 kJ per pulse, with a one-microsecond pulsewidth, and a peak power of 1 GW. The three cavity tube has already produced pulses with more than 150 J and over 450 MW peak power: The output power has been limited by breakdown In the output cavity. A novel scheme for ex-situ conditioning of the output cavity gap pieces is being developed. A specialized cavity with a high Q, that holds the gap pieces in the same geometry as in the tube, is used in conjunction with a high power commercial klystron to field condition the surfaces. Results from this work and recent PIC code simulations will be presented.

Key concepts: Klystron, Microsecond, Physics, Amplifier, Pulse (music), Power (physics), Optics, Pulsed power

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Conditioning and simulations for the one-microsecond, one kilojoule per-pulse L-band relativistic klystron — Research Paper | ScholarLens