2016
DOI: 10.1103/physrevaccelbeams.19.031301
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Experimental high gradient testing of a 17.1 GHz photonic band-gap accelerator structure

Abstract: We report the design, fabrication, and high gradient testing of a 17.1 GHz photonic band-gap (PBG) accelerator structure. Photonic band-gap (PBG) structures are promising candidates for electron accelerators capable of high-gradient operation because they have the inherent damping of high order modes required to avoid beam breakup instabilities. The 17.1 GHz PBG structure tested was a single cell structure composed of a triangular array of round copper rods of radius 1.45 mm spaced by 8.05 mm. The test assembl… Show more

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Cited by 10 publications
(6 citation statements)
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“…Comparing with the metallic PBG structure tested at MIT [16,17], the dark current of the HPBG-d3 structure was much higher even at a low gradient level. Two sources may be responsible: (1) the high surface E field which was enhanced by the triple point [31] and the gaps between the components introduced by the clamped assembly, and (2) multipactor which was more easily triggered by a system including a dielectric.…”
Section: Dark Current and Light Emissionmentioning
confidence: 91%
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“…Comparing with the metallic PBG structure tested at MIT [16,17], the dark current of the HPBG-d3 structure was much higher even at a low gradient level. Two sources may be responsible: (1) the high surface E field which was enhanced by the triple point [31] and the gaps between the components introduced by the clamped assembly, and (2) multipactor which was more easily triggered by a system including a dielectric.…”
Section: Dark Current and Light Emissionmentioning
confidence: 91%
“…The procedure for the high power, high gradient testing of the HPBG structures was similar to what had been conducted with the metallic PBG structures [11,12,16,17]. The experiments were conducted at the MIT PSFC Accelerator Laboratory.…”
Section: A Experimental Setup and Diagnosticsmentioning
confidence: 99%
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“…ELLIPTICAL SIDEWALL Figure 2 compares the design of the previously studied single cell standing wave accelerator cavity having a straight sidewall [MIT-DLWG, Fig. 2(a) [32] ] with the elliptical sidewall cavity [ Fig. 2(b)] discussed in this paper.…”
Section: Design Of the Structure With Anmentioning
confidence: 99%