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The European strategy for accelerator-based photon science
Abela, R., Biscari, C., Daillant, J., Dosch, H., & Rivkin, L. (2023). The European strategy for accelerator-based photon science. European Physical Journal Plus, 138(4), 355 (7 pp.). https://doi.org/10.1140/epjp/s13360-023-03947-w
Prospects on muon colliders
Schulte, D., Delahaye, J. P., Diemoz, M., Long, K., Mansoulié, B., Pastrone, N., … Wulzer, A. (2021). Prospects on muon colliders. In D. Adamová, K. Augsten, J. Bielcikova, T. Davidek, Z. Dolezal, T. Ferber, … R. Zlebcik (Eds.), Proceedings of science: Vol. 390. 40th international conference on high energy physics (p. 703 (6 pp.). https://doi.org/10.22323/1.390.0703
“Spiral COSAMI” — a multi-undulator compact source for actinic mask inspection in the extreme ultraviolet range
Wrulich, A. F., Streun, A., & Rivkin, L. (2021). “Spiral COSAMI” — a multi-undulator compact source for actinic mask inspection in the extreme ultraviolet range. Nuclear Instruments and Methods in Physics Research, Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 1014, 165731 (9 pp.). https://doi.org/10.1016/j.nima.2021.165731
Design and principles of synchrotrons and circular colliders
Holzer, B. J., Goddard, B., Herr, W., Muratori, B., Rivkin, L., Biagini, M. E., … Möhl, D. (2020). Design and principles of synchrotrons and circular colliders. In S. Myers & H. Schopper (Eds.), Particle physics reference library: Vol. 3. Accelerators and colliders (pp. 205-294). https://doi.org/10.1007/978-3-030-34245-6_6
Characterization of the electron beam in the ACHIP chamber in SwissFEL
Ischebeck, R., Bettoni, S., Borrelli, S., Calvi, M., Dijkstal, P., Ferrari, E., … Zehnder, D. (2020). Characterization of the electron beam in the ACHIP chamber in SwissFEL. In A. Cianchi, R. Assmann, M. Ferrario, B. Holzer, P. Nghiem, N. Delerue, … P. A. Walker (Eds.), Journal of physics: conference series: Vol. 1596. 4th European advanced accelerator concepts workshop 15-20 September 2019, Isola d'Elba, Italy (p. 012019 (6 pp.). https://doi.org/10.1088/1742-6596/1596/1/012019
A compact and cost-effective hard X-ray free-electron laser driven by a high-brightness and low-energy electron beam
Prat, E., Abela, R., Aiba, M., Alarcon, A., Alex, J., Arbelo, Y., … Zimoch, E. (2020). A compact and cost-effective hard X-ray free-electron laser driven by a high-brightness and low-energy electron beam. Nature Photonics, 14, 748-754. https://doi.org/10.1038/s41566-020-00712-8
FCC physics opportunities: Future Circular Collider conceptual design report volume 1
Abada, A., Abbrescia, M., AbdusSalam, S. S., Abdyukhanov, I., Fernandez, J. A., Abramov, A., … FCC Collaboration (2019). FCC physics opportunities: Future Circular Collider conceptual design report volume 1. European Physical Journal C: Particles and Fields, 79(6), 474 (161 pp.). https://doi.org/10.1140/epjc/s10052-019-6904-3
FCC-ee: the lepton collider. Future Circular Collider conceptual design report volume 2
Abada, A., Abbrescia, M., AbdusSalam, S. S., Abdyukhanov, I., Abelleira Fernandez, J., Abramov, A., … FCC Collaboration (2019). FCC-ee: the lepton collider. Future Circular Collider conceptual design report volume 2. European Physical Journal Special Topics, 228(2), 261-623. https://doi.org/10.1140/epjst/e2019-900045-4
FCC-hh: the Hadron Collider. Future Circular Collider conceptual design report volume 3
Abada, A., Abbrescia, M., AbdusSalam, S. S., Abdyukhanov, I., Abelleira Fernandez, J., Abramov, A., … FCC Collaboration (2019). FCC-hh: the Hadron Collider. Future Circular Collider conceptual design report volume 3. European Physical Journal Special Topics, 228(4), 755-1107. https://doi.org/10.1140/epjst/e2019-900087-0
HE-LHC: the high-energy Large Hadron Collider. Future Circular Collider conceptual design report volume 4
Abada, A., Abbrescia, M., AbdusSalam, S. S., Abdyukhanov, I., Abelleira Fernandez, J., Abramov, A., … FCC Collaboration (2019). HE-LHC: the high-energy Large Hadron Collider. Future Circular Collider conceptual design report volume 4. European Physical Journal Special Topics, 228(5), 1109-1382. https://doi.org/10.1140/epjst/e2019-900088-6
Challenges in simulating beam dynamics of dielectric laser acceleration
Niedermayer, U., Adelmann, A., Bettoni, S., Calvi, M., Dehler, M., Ferrari, E., … 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
Application of machine learning techniques at the CERN large hadron collider
Van der Veken, F. F., Azzopardi, G., Blanc, F., Coyle, L., Fol, E., Giovannozzi, M., … Valentino, G. (2019). Application of machine learning techniques at the CERN large hadron collider. In Proceedings of science: Vol. 364. European physical society conference on high energy physics (p. 006 (8 pp.). https://doi.org/10.22323/1.364.0006
Consolidation and extension of the high-gradient LINAC RF technology at PSI
Craievich, P., Bopp, M., Braun, H., Citterio, A., Fitze, H., Garvey, T., … 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
A compact high-brightness accelerator-based EUV source for actinic mask inspection
Ekinci, Y., Garvey, T., Rivkin, L., Streun, A., & Wrulich, A. (2018). A compact high-brightness accelerator-based EUV source for actinic mask inspection. In Compact EUV & X-ray light sources. High-brightness sources and light-driven interactions (p. ET3B.5 (2 pp.). https://doi.org/10.1364/EUVXRAY.2018.ET3B.5
A high-brightness accelerator-based EUV source for metrology applications
Ekinci, Y., Garvey, T., Streun, A., Wrulich, A., & Rivkin, L. (2018). A high-brightness accelerator-based EUV source for metrology applications. In E. E. Gallagher & J. H. Rankin (Eds.), Proceedings of SPIE: Vol. 10810. Photomask technology 2018 (p. 108100W (9 pp.). https://doi.org/10.1117/12.2501930
The ACHIP experimental chambers at the Paul Scherrer Institut
Ferrari, E., Ischebeck, R., Bednarzik, M., Bettoni, S., Borrelli, S., Braun, H. H., … 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
SLS-2 – the upgrade of the Swiss Light Source
Streun, A., Garvey, T., Rivkin, L., Schlott, V., Schmidt, T., Willmott, P., & Wrulich, A. (2018). SLS-2 – the upgrade of the Swiss Light Source. Journal of Synchrotron Radiation, 25(3), 631-641. https://doi.org/10.1107/S1600577518002722
A compact storage ring for the production of EUV radiation
Garvey, T., Rivkin, L., Streun, A., Wrulich, A., & Ekinci, Y. (2017). A compact storage ring for the production of EUV radiation. In 13th international topical meeting on nuclear applications of accelerators (AccApp '17) (pp. 217-225). American Nuclear Society.
THz streak camera method for synchronous arrival time measurement of two-color hard X-ray FEL pulses
Gorgisyan, I., Ischebeck, R., Erny, C., Dax, A., Patthey, L., Pradervand, C., … Juranić, P. (2017). THz streak camera method for synchronous arrival time measurement of two-color hard X-ray FEL pulses. Optics Express, 25(3), 2080-2091. https://doi.org/10.1364/OE.25.002080
SwissFEL: the Swiss X-ray free electron laser
Milne, C. J., Schietinger, T., Aiba, M., Alarcon, A., Alex, J., Anghel, A., … 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