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The PolariX-TDS project: bead-pull measurements and high-power test on the prototype
Craievich, P., Bopp, M., Braun, H. H., Citterio, A., Ganter, R., Marcellini, F., Kleeb, T., Pedrozzi, M., Prat, E., Reiche, S., Grudiev, A., Lee Millar, W., Catalan-Lasheras, N., McMonagle, G., Pitman, S., del Pozo Romano, V., Szypula, K. T., Wuensch, W., Marchetti, B., … de Z. Wagner, A. (2019). The PolariX-TDS project: bead-pull measurements and high-power test on the prototype. In W. Decking, H. Sinn, G. Geloni, S. Schreiber, M. Marx, & V. R. W. Schaa (Eds.), Free electron laser conference: Vol. 39. 39th international free-electron laser conference. FEL2019. Proceedings (pp. 396-399). https://doi.org/10.18429/JACoW-FEL2019-WEP036
Multi-objective shape optimization of radio frequency cavities using an evolutionary algorithm
Kranjčević, M., Adelmann, A., Arbenz, P., Citterio, A., & Stingelin, L. (2019). Multi-objective shape optimization of radio frequency cavities using an evolutionary algorithm. Nuclear Instruments and Methods in Physics Research, Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 920, 106-114. https://doi.org/10.1016/j.nima.2018.12.066
Challenges in simulating beam dynamics of dielectric laser acceleration
Niedermayer, U., Adelmann, A., Bettoni, S., Calvi, M., Dehler, M., Ferrari, E., Frei, F., Hauenstein, D., Hermann, B., Hiller, N., Ischebeck, R., Lombosi, C., Prat, E., Reiche, S., Rivkin, L., & Simakov, E. (2019). Challenges in simulating beam dynamics of dielectric laser acceleration. International Journal of Modern Physics A, 34(36), 1942031 (15 pp.). https://doi.org/10.1142/S0217751X19420314
Calculation of longitudinal collective instabilities with <em>mbtrack-cuda</em>
Xu, H., Locans, U., Adelmann, A., & Stingelin, L. (2019). Calculation of longitudinal collective instabilities with mbtrack-cuda. Nuclear Instruments and Methods in Physics Research, Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 922, 345-351. https://doi.org/10.1016/j.nima.2019.01.041
Low energy dark current collimation system in single-pass linacs
Bettoni, S., Craievich, P., Pedrozzi, M., Schaer, M., & Stingelin, L. (2018). Low energy dark current collimation system in single-pass linacs. Physical Review Accelerators and Beams, 21(2), 023401 (13 pp.). https://doi.org/10.1103/PhysRevAccelBeams.21.023401
Consolidation and extension of the high-gradient LINAC RF technology at PSI
Craievich, P., Bopp, M., Braun, H., Citterio, A., Fitze, H., Garvey, T., Kleeb, T., Loehl, F., Marcellini, F., Pedrozzi, M., Raguin, J. Y., Rivkin, L., Rolli, K., & Zennaro, R. (2018). Consolidation and extension of the high-gradient LINAC RF technology at PSI. In G. Pei, Y. H. Chin, S. Fu, V. R. W. Schaa, & N. Zhao (Eds.), Linear accelerator conference: Vol. 29. Proceedings of the 29th linear accelerator conference (pp. 937-940). https://doi.org/10.18429/JACoW-LINAC2018-THPO115
Linac booster for high energy proton therapy and imaging
Degiovanni, A., Amaldi, U., Lomax, A. J., Schippers, J. M., Stingelin, L., & Bilbao de Mendizabal, J. (2018). Linac booster for high energy proton therapy and imaging. Physical Review Accelerators and Beams, 21(6), 064701 (7 pp.). https://doi.org/10.1103/PhysRevAccelBeams.21.064701
Conceptual design for SLS-2
Dehler, M., Streun, A., Citterio, A., Garvey, T., Hahn, M., Schulz, L., Negrazus, M., & Vranković, V. (2018). Conceptual design for SLS-2. In Y. H. Chin, Z. Zhao, C. Petit-Jean-Genaz, & V. R. W. Schaa (Eds.), ICFA advanced beam dynamics workshop: Vol. 60. Proceedings of the 60th ICFA advanced beam dynamics workshop on future light sources (pp. 150-153). https://doi.org/10.18429/JACoW-FLS2018-WEP2PT038
The ACHIP experimental chambers at the Paul Scherrer Institut
Ferrari, E., Ischebeck, R., Bednarzik, M., Bettoni, S., Borrelli, S., Braun, H. H., Calvi, M., David, C., Dehler, M., Frei, F., Garvey, T., Guzenko, V. A., Hiller, N., Hommelhoff, P., McNeur, J., Orlandi, G. L., Ozkan-Loch, C., Prat, E., Reiche, S., … Rivkin, L. (2018). The ACHIP experimental chambers at the Paul Scherrer Institut. Nuclear Instruments and Methods in Physics Research, Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 907, 244-247. https://doi.org/10.1016/j.nima.2018.02.112
Status of the THz streaking experiment with split ring resonators at FLUTE
Schlott, V., Dehler, M. M., Ischebeck, R., Moser, M., Feurer, T., Hayati, M., Ollmann, Z., Tarkeshian, R., Bründermann, E., Funkner, S., Müller, A. S., Nasse, M. J., Niehues, G., Ruprecht, R., Schmelzer, T., Schuh, M., Schwarz, M., & Yan, M. (2018). Status of the THz streaking experiment with split ring resonators at FLUTE. In Z. Liu, S. Lidia, A. McCausey, & V. R. W. Schaa (Eds.), International beam instrumentation conference: Vol. 6. Proceedings of the 6th international beam instrumentation conference (pp. 186-188). https://doi.org/10.18429/JACoW-IBIC2017-TUPCC16
Dielectric waveguide-based THz radiator study for SwissFEL
Shi, L., Marcellini, F., Reiche, S., Ischebeck, R., Mittelbach, A., Bettoni, S., Thominet, V., Hermann, B., Ferrari, E., & Dehler, M. (2018). Dielectric waveguide-based THz radiator study for SwissFEL. In G. Pei, Y. H. Chin, S. Fu, V. R. W. Schaa, & N. Zhao (Eds.), Linear accelerator conference: Vol. 29. Proceedings of the 29th linear accelerator conference (pp. 94-97). https://doi.org/10.18429/JACoW-LINAC2018-MOPO034
Energy efficiency studies for dual-grating dielectric laser-driven accelerators
Wei, Y., Ibison, M., Resta-Lopez, J., Welsch, C. P., Ischebeck, R., Jamison, S., Xia, G., Dehler, M., Prat, E., & Smith, J. D. A. (2018). Energy efficiency studies for dual-grating dielectric laser-driven accelerators. Nuclear Instruments and Methods in Physics Research, Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 909, 257-260. https://doi.org/10.1016/j.nima.2017.12.049
Investigations into dual-grating THz-driven accelerators
Wei, Y., Ischebeck, R., Dehler, M., Ferrari, E., Hiller, N., Jamison, S., Xia, G., Hanahoe, K., Li, Y., Smith, J. D. A., & Welsch, C. P. (2018). Investigations into dual-grating THz-driven accelerators. Nuclear Instruments and Methods in Physics Research, Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 877, 173-177. https://doi.org/10.1016/j.nima.2017.09.050
SwissFEL: the Swiss X-ray free electron laser
Milne, C. J., Schietinger, T., Aiba, M., Alarcon, A., Alex, J., Anghel, A., Arsov, V., Beard, C., Beaud, P., Bettoni, S., Bopp, M., Brands, H., Brönnimann, M., Brunnenkant, I., Calvi, M., Citterio, A., Craievich, P., Divall, M. C., Dällenbach, M., … Braun, H. H. (2017). SwissFEL: the Swiss X-ray free electron laser. Applied Sciences, 7(7), 720 (57 pp.). https://doi.org/10.3390/app7070720