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@InProceedings{lipka:ibic2020-thpp10, author = {D. Lipka}, title = {{Influence of a Bellow to a Cavity BPM for SINBAD}}, booktitle = {Proc. IBIC'20}, pages = {226--228}, paper = {THPP10}, language = {english}, keywords = {dipole, resonance, cavity, simulation, vacuum}, venue = {Santos, Brazil}, series = {International Beam Instrumentation Conference}, number = {9}, publisher = {JACoW Publishing, Geneva, Switzerland}, month = {10}, year = {2020}, issn = {2673-5350}, isbn = {978-3-95450-222-6}, doi = {10.18429/JACoW-IBIC2020-THPP10}, url = {https://www.jacow.org/ibic2020/papers/thpp10.pdf}, note = {https://doi.org/10.18429/JACoW-IBIC2020-THPP10}, abstract = {A cavity beam position monitor acts for the detection of the beam location within a pipe with high precision and best resolution. Some of them are used as a fixed point to refer the other parts of the beamline. To be able to fix the monitor against the other vacuum components bellows need to be adapted next to the monitor to relax the other part of the vacuum chamber. The bellow itself can create a resonance which would influence the resonator of the cavity beam position monitor. In this study the influence of a the bellow to a cavity beam position monitor is investigated with simulations for a SINBAD project. The result is that the influence to the dipole resonator is below 0.1%.}, }