% IMPORTANT: The following is UTF-8 encoded. This means that in the presence % of non-ASCII characters, it will not work with BibTeX 0.99 or older. % Instead, you should use an up-to-date BibTeX implementation like “bibtex8” or % “biber”. @ARTICLE{Jalas:455042, author = {Jalas, Sören and Kirchen, Manuel and Messner, Philipp and Winkler, Paul and Hübner, Lars and Dirkwinkel, Julian and Schnepp, Matthias and Lehe, Remi and Maier, Andreas}, title = {{B}ayesian {O}ptimization of a {L}aser-{P}lasma {A}ccelerator}, journal = {Physical review letters}, volume = {126}, number = {10}, issn = {0031-9007}, address = {College Park, Md.}, publisher = {APS}, reportid = {PUBDB-2021-00902}, pages = {104801}, year = {2021}, abstract = {Generating high-quality laser-plasma accelerated electron beams requires carefully balancing a plethora of physical effects and is therefore challenging—both conceptually and in experiments. Here, we use Bayesian optimization of key laser and plasma parameters to flatten the longitudinal phase space of an ionization-injected electron bunch via optimal beam loading. We first study the concept with particle-in-cell simulations and then demonstrate it in experiments. Starting from an arbitrary set point, the plasma accelerator autonomously tunes the beam energy spread to the subpercent level at 254 MeV and 4.7 pC/MeV spectral density. Finally, we study a robust regime, which improves the stability of the laser-plasma accelerator and delivers sub-five-percent rms energy spread beams for $90\%$ of all shots.}, keywords = {Plasma and Beam Physics (autogen)}, cin = {CFEL-LUX / MPA / MLS}, ddc = {530}, cid = {I:(DE-H253)CFEL-LUX-20160909 / I:(DE-H253)MPA-20200816 / I:(DE-H253)MLS-20210107}, pnm = {621 - Accelerator Research and Development (POF4-621)}, pid = {G:(DE-HGF)POF4-621}, experiment = {EXP:(DE-H253)REGAE-20150101}, typ = {PUB:(DE-HGF)16}, pubmed = {pmid:33784117}, UT = {WOS:000627631100006}, doi = {10.1103/PhysRevLett.126.104801}, url = {https://bib-pubdb1.desy.de/record/455042}, }