DocumentCode
3195995
Title
Planar waveguide hybrids for very high power RF
Author
Nantista, C.D. ; Fowkes, W.R. ; Kroll, N.M. ; Tantaw, S.G.
Author_Institution
Linear Accel. Center, Stanford Univ., CA, USA
Volume
2
fYear
1999
fDate
1999
Firstpage
1432
Abstract
Two basic designs have been developed for waveguide hybrids, or 3-dB couplers, capable of handling hundreds of megawatts at X-band. Coupling is provided by one or two connecting waveguides with h-plane junctions and matching elements. In the former case, the connecting waveguide supports two modes. Small apertures and field-enhancing e-bends are avoided to reduce the risk of RF breakdown. The h-plane symmetry also allows the use of over-moded rectangular waveguide in which the height has been increased to reduce field amplitudes without affecting the scattering matrix. The theory and designs are presented, along with the results of prototype tests of functionality and power-handling capability. Such a device is integral to the RF pulse compression or power distribution system of the Next Linear Collider (NLC) for combining, splitting, and directing power. This work was motivated by the observation of RF breakdown at power levels above 200 MW in conventional and modified magic-T´s
Keywords
accelerator RF systems; electron accelerators; linear colliders; planar waveguides; 3-dB couplers; Next Linear Collider; RF breakdown; RF pulse compression; X-band; connecting waveguides; field amplitudes; functionality; h-plane junctions; h-plane symmetry; matching elements; planar waveguide hybrids; power distribution system; power-handling capability; scattering matrix; Apertures; Couplers; Electric breakdown; Joining processes; Planar waveguides; Radio frequency; Rectangular waveguides; Scattering; Transmission line matrix methods; Waveguide junctions;
fLanguage
English
Publisher
ieee
Conference_Titel
Particle Accelerator Conference, 1999. Proceedings of the 1999
Conference_Location
New York, NY
Print_ISBN
0-7803-5573-3
Type
conf
DOI
10.1109/PAC.1999.795572
Filename
795572
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