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AbstractAbstract
[en] The next generation of linear colliders will require alignment accuracies and stabilities of component placement at least one, perhaps two, orders of magnitude better than can be achieved by the conventional methods and procedures in practice today. The magnitudes of these component-placement tolerances for current designs of various linear collider subsystems are tabulated. In the micron range, long-term ground motion is sufficiently rapid that on-line reference and mechanical correction systems are called for. Some recent experiences with the upgraded SLAC laser alignment systems and examples of some conceivable solutions for the future are described. The so called girder problem is discussed in the light of ambient and vibratory disturbances. The importance of the quality of the underlying geology is stressed. The necessity and limitations of particle-beam-derived placement information are mentioned
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Stanford Linear Accelerator Center, Menlo Park, CA (United States); 322 p; Oct 1990; p. 275-286; 1. international workshop on accelerator alignment; Stanford, CA (United States); 31 Jul - 2 Aug 1989; CONF-8907190--; OSTI as DE91007297; NTIS; INIS
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