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38 38  Nature Photonics **1**, 336-342 (2007);
39 39  [[http:~~/~~/dx.doi.org/10.1038/nphoton.2007.76>>url:http://dx.doi.org/10.1038/nphoton.2007.76||shape="rect"]]
40 40  
41 -**FLASH2 and other recent developments:**
41 +**FLASH2 and other recent developments (such as FLASH2020+ upgrade pogram):**
42 42  
43 +1. Martin Beye, Markus Gühr, Ingmar Hartl, Elke Plönjes, Lucas Schaper, Siegfried Schreiber, Kai Tiedtke and Rolf Treusch,
44 +//FLASH and the FLASH2020+ project - current status and upgrades for the free-electron laser in Hamburg at DESY//,
45 +Eur. Phys. J. Plus **138**, 193 (2023);
46 +[[https:~~/~~/doi.org/10.1140/epjp/s13360-023-03814-8>>url:https://doi.org/10.1140/epjp/s13360-023-03814-8]]
43 43  1. B. Faatz et al.,
44 44  //Simultaneous operation of two soft x-ray free-electron lasers driven by one linear accelerator//,
45 45  New J. Phys. **18**, 062002 (2016);
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58 58  AIP Conf. Proc. **2054**, 030015 (2019);
59 59  [[http:~~/~~/dx.doi.org/10.1063/1.5084578>>url:http://dx.doi.org/10.1063/1.5084578||shape="rect"]]
60 60  
65 +**Afterburner Undulator at FLASH2:**
66 +
67 +1. M. Tischer, H. Bienert, K. Götze, D. Meissner, P. Neumann, P. N'Gotta, T. Ramm, A. Schöps, P. Talkovski, S. Telawane,
68 +//Development of an APPLE-III undulator for FLASH-2//,
69 +Proc. SRI 2021, Online (2021), J. Phys.: Conf. Ser. **2380,** 012017 (2022);
70 +[[https:~~/~~/dx.doi.org/10.1088/1742-6596/2380/1/012017>>url:https://dx.doi.org/10.1088/1742-6596/2380/1/012017]]
71 +1. M. Mehrjoo, B. Faatz, G. Paraskaki, M. Tischer, P. Vagin,
72 +//Expected Radiation Properties of the Harmonic Afterburner at FLASH2//,
73 +Proc. FEL 2019, Hamburg, germany (2019), Paper WEP072 via JACoW;
74 +[[https:~~/~~/dx.doi.org/10.18429/JACoW-FEL2019-WEP072>>url:https://dx.doi.org/10.18429/JACoW-FEL2019-WEP072]]
75 +1. (((
76 +M. Tischer, H. Bienert, K. Götze, P. Neumann, T. Ramm, A. Schöps, P. Talkovski, S. Telawane and P. Vagin,
77 +//Construction and commissioning of an APPLE-III afterburner undulator as a prototype for radiators in the new seeding line of FLASH2020+,//
78 +**in preparation for SRI2024**
79 +
80 +)))
81 +
61 61  == FEL machine diagnostics ==
62 62  
63 -**a) Longitudinal FEL beam diagnostics (PolariX (1.) and LOLA (2.))**
84 +**a) Longitudinal FEL beam diagnostics (PolariX (1. / 2.) and LOLA (3.))**
64 64  
65 65  1. B. Marchetti, A. Grudiev, P. Craievich, R. Assmann, H.‑H. Braun, N. Catalan Lasheras, F. Christie, R. D’Arcy, R. Fortunati, R. Ganter, P. González Caminal, M. Hoffmann, M. Huening, S. M. Jaster‑Merz, R. Jonas, F. Marcellini, D. Marx, G. McMonagle, J. Osterhoff, M. Pedrozzi, E. Prat Costa, S. Reiche, M. Reukauff, S. Schreiber, G. Tews, M. Vogt, S. Wesch & W. Wuensch,
66 66  //Experimental demonstration of novel beam characterization// //using a polarizable X‑band// //transverse deflection structure//,
67 67  Scientific Reports **11**,3560 (2021);
68 68  [[https:~~/~~/doi.org/10.1038/s41598-021-82687-2>>url:https://doi.org/10.1038/s41598-021-82687-2||shape="rect"]]
90 +1. F. Christie, J. Rönsch-Schulenburg, M. Vogt​​​​​​,
91 +//​ A PolariX TDS FOR THE FLASH2 BEAMLINE ​​​​//
92 +​​​[[https:~~/~~/accelconf.web.cern.ch/fel2019/papers/wep006.pdf>>url:https://accelconf.web.cern.ch/fel2019/papers/wep006.pdf]]
69 69  1. C. Behrens, N. Gerasimova, Ch. Gerth, B. Schmidt, E. A. Schneidmiller, S. Serkez, S. Wesch, and M. V. Yurkov,
70 70  Constraints on photon pulse duration from longitudinal electron beam diagnostics at a soft x-ray free-electron laser,
71 71  Phys. Rev. ST Accel. Beams **15**, 030707 (2012)
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561 561  Sci. Rep. **10**, 6867 (2020);
562 562  (% class="nolink" style="color:#003366" %)[[https:~~/~~/doi.org/10.1038/s41598-020-63019-2>>url:https://doi.org/10.1038/s41598-020-63019-2||shape="rect"]]
563 563  
564 -
565 565  = Data analysis =
566 566  
567 567  **Sorting data**