Title of article :
Development of a dual-layered dielectric-loaded accelerating structure
Author/Authors :
Jing، نويسنده , , Chunguang and Kanareykin، نويسنده , , Alexei and Kazakov، نويسنده , , Sergey and Liu، نويسنده , , Wanming and Nenasheva، نويسنده , , Elizaveta and Schoessow، نويسنده , , Paul and Gai، نويسنده , , Wei، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2008
Pages :
8
From page :
132
To page :
139
Abstract :
rf Power attenuation is a critical problem in the development of dielectric-loaded structures for particle acceleration. In a previous paper [C. Jing, W. Liu, W. Gai, J. Power, T. Wong, Nucl. Instr. Meth. A 539 (2005) 445] we suggested the use of a Multilayer Dielectric-Loaded Accelerating Structure (MDLA) as a possible approach for reducing the rf losses in a single layer device. The MDLA is based on the principle of Bragg reflection familiar from optics that is used to partially confine the fields inside the dielectric layers and reduce the wall current losses at the outer boundary. We report here on the design, construction and testing of a prototype X-band double-layer structure (2DLA). The measurements show an rf power attenuation for the 2DLA more than ten times smaller than that of a comparable single-layer structure, in good agreement with the analytic results. Testing and operation of MDLAs also requires efficient power coupling from test equipment or rf power systems to the device. We describe the design and construction of two novel structures: a TM03 mode launcher for cold testing and a power coupler for planned high-gradient experiments.
Keywords :
Bragg reflection , Multilayered dielectric-loaded accelerator , rf Power loss reduction
Journal title :
Nuclear Instruments and Methods in Physics Research Section A
Serial Year :
2008
Journal title :
Nuclear Instruments and Methods in Physics Research Section A
Record number :
2210190
Link To Document :
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