dorsal/arxiv
View SchemaNLC Beam Properties and Extraction Line Performance with Beam Offset at IP
| Authors | Y. Nosochkov, T. O. Raubenheimer, K. A. Thompson |
|---|---|
| Categories | |
| ArXiv ID | physics/0106061 |
| URL | https://arxiv.org/abs/physics/0106061 |
| Journal | Conf.Proc.C0106181:3825-3827,2001 |
Abstract
Properties of the disrupted NLC beam at the Interaction Point (IP) and particle loss in the extraction line are analyzed as a function of beam-to-beam position and angular offset at IP. The simulations show that disruption and beam loss maximize when the vertical beam separation at IP is about 20 times the rms vertical beam size. The horizontal offset does not increase the disruption and the beam loss. The angular offsets cause particle loss in the extraction line mainly because of the beam orbit oscillations.
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"abstract": "Properties of the disrupted NLC beam at the Interaction Point (IP) and\nparticle loss in the extraction line are analyzed as a function of beam-to-beam\nposition and angular offset at IP. The simulations show that disruption and\nbeam loss maximize when the vertical beam separation at IP is about 20 times\nthe rms vertical beam size. The horizontal offset does not increase the\ndisruption and the beam loss. The angular offsets cause particle loss in the\nextraction line mainly because of the beam orbit oscillations.",
"arxiv_id": "physics/0106061",
"authors": [
"Y. Nosochkov",
"T. O. Raubenheimer",
"K. A. Thompson"
],
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"physics.acc-ph"
],
"journal_ref": "Conf.Proc.C0106181:3825-3827,2001",
"title": "NLC Beam Properties and Extraction Line Performance with Beam Offset at IP",
"url": "https://arxiv.org/abs/physics/0106061"
},
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