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@inproceedings{antipov:ipac2022-wepost029, author = {S.A. Antipov and I.V. Agapov and R. Brinkmann and Á. Ferran Pousa and M.A. Jebramcik and A. Martinez de la Ossa and M. Thévenet}, % author = {S.A. Antipov and I.V. Agapov and R. Brinkmann and Á. Ferran Pousa and M.A. Jebramcik and A. Martinez de la Ossa and others}, % author = {S.A. Antipov and others}, title = {{First Start-to-End Simulations of the 6 GeV Laser-Plasma Injector at DESY}}, booktitle = {Proc. IPAC'22}, % booktitle = {Proc. 13th International Particle Accelerator Conference (IPAC'22)}, pages = {1757--1760}, eid = {WEPOST029}, language = {english}, keywords = {laser, plasma, emittance, injection, electron}, venue = {Bangkok, Thailand}, series = {International Particle Accelerator Conference}, number = {13}, publisher = {JACoW Publishing, Geneva, Switzerland}, month = {07}, year = {2022}, issn = {2673-5490}, isbn = {978-3-95450-227-1}, doi = {10.18429/JACoW-IPAC2022-WEPOST029}, url = {https://jacow.org/ipac2022/papers/wepost029.pdf}, abstract = {{DESY is studying the feasibility of a 6 GeV laser-plasma injector for top-up operation of its future flagship synchrotron light source PETRA IV. A potential design of such an injector involves a single plasma stage, a beamline for beam capture and phase space manipulation, and a X-band rf energy compressor. Numerical tracking with realistic beam distributions shows that an energy variation below 0.1%, rms and a transverse emittance about 1 nm-rad, rms can be achieved under realistic timing, energy, and pointing jitters. PETRA IV injection efficiency studies performed with a conservative 5% beta-beating indicate negligible beam losses for the simulated beams during top-up. Provided the necessary progress on high-power lasers and plasma cells, the laser plasma injector could become a competitive alternative to the conventional injector chain.}}, }