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Summary

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4 4  {{info}}
5 5  **Collection of reference papers for FLASH1 and FLASH2 beamlines and instruments.**
6 6  
7 -**Last update:** {{date value="2024-09-18 00:00" format="yyyy-MM-dd"/}}
4 +**Last update:** {{date value="2025-09-18 00:00" format="yyyy-MM-dd"/}}
8 8  
9 9  **In case of multiple references, the most complete or up-to-date is 1st.**
10 10  {{/info}}
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22 22  {{toc exclude="Task report"/}}
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25 25  
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31 31  
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34 34  = FEL Accelerator Part =
35 35  
36 36  1. W. Ackermann et al.,
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76 76  M. Tischer, H. Bienert, K. Götze, P. Neumann, T. Ramm, A. Schöps, P. Talkovski, S. Telawane and P. Vagin,
77 77  //Construction and commissioning of an APPLE-III afterburner undulator as a prototype for radiators in the new seeding line of FLASH2020+,//
78 78  **in preparation for SRI2024**
79 -
80 80  )))
81 81  
82 82  == FEL machine diagnostics ==
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346 346  J. Synchrotron Rad. **26**, 1514-1522 (2019);
347 347  [[https:~~/~~/doi.org/10.1107/S1600577519007835>>url:https://doi.org/10.1107/S1600577519007835||shape="rect"]]
348 348  
349 -=== **) FLASH1 Tunnel Spectrometer** ===
328 +=== **c) FLASH1 Tunnel Spectrometer** ===
350 350  
351 351  ​​​​​​
352 352  
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372 372  
373 373  === **e) Online photoionization spectrometer (OPIS)** ===
374 374  
375 -1. (((
376 -Markus Braune, Jens Buck, Marion Kuhlmann, Sören Grunewald, Stefan Düsterer, Jens Viefhaus, Kai Tiedtke
354 +1. Gregor Hartmann, Gesa Goetzke, Stefan Düsterer, Peter Feuer-Forson, Fabiano Lever, David Meier, Felix Möller, Luis Vera Ramirez, Markus Guehr, Kai Tiedtke, Jens Viefhaus & Markus Braune,
355 +//Unsupervised real‑world knowledge extraction via disentangled variational autoencoders for photon diagnostics//,
356 +Sci. Rep. **12, **20783 (2022); [[https:~~/~~/doi.org/10.1038/s41598-022-25249-4>>url:https://doi.org/10.1038/s41598-022-25249-4]]
357 +1. Markus Braune, Jens Buck, Marion Kuhlmann, Sören Grunewald, Stefan Düsterer, Jens Viefhaus, Kai Tiedtke
377 377  //Non-invasive online wavelength measurements at FLASH2 and present benchmark.//
378 378  Proc. PhotonDiag2017,
379 379  J. Synchrotron Rad. **25**, 3–15 (2018)
380 380  (% style="color:#3366ff" %)__[[https:~~/~~/doi.org/10.1107/S1600577517013893>>url:https://doi.org/10.1107/S1600577517013893||shape="rect" style="color: rgb(51,102,255);"]]__
381 -)))
382 382  1. Markus Braune, Günter Brenner, Siarhei Dziarzhytski, Pavle Juranić, Andrey Sorokin, Kai Tiedtke,
383 383  //A non-invasive online photoionization spectrometer for FLASH2//,
384 384  Proc. PhotonDiag2015,
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408 408  
409 409  === **h) Timing tools (photon arrival time monitors)** ===
410 410  
411 -*
412 -** ===
413 -
414 414  1. E. Zapolnova, R. Pan, T. Golz, M. Sindik, M. Nikolic, M. Temme, M. Rabasovic, D. Grujic, Z. Chen, S. Toleikis, N. Stojanovic,
415 415  //XUV-driven plasma switch for THz: new spatio-temporal overlap tool for XUV−THz pump−probe experiments at FELs//,
416 416  J. Synchrotron Rad. **27**, 11-16 (2020);
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434 434  
435 435  === **i) XUV Pulse Length measurements** ===
436 436  
437 -*
438 -** ===
439 -
440 440  1. **(overview)**
441 441  S. Düsterer, M. Rehders, A. Al-Shemmary, C. Behrens, G. Brenner, O. Brovko, M. DellAngela, M. Drescher, B. Faatz, J. Feldhaus, U. Frühling, N. Gerasimova, N. Gerken, C. Gerth, T. Golz, A. Grebentsov, E. Hass, K. Honkavaara, V. Kocharian, M. Kurka, Th. Limberg, R. Mitzner, R. Moshammer, E. Plönjes, M. Richter, J. Rönsch-Schulenburg, A. Rudenko, H. Schlarb, B. Schmidt, A. Senftleben, E.A. Schneidmiller, B. Siemer, F. Sorgenfrei, A.A. Sorokin, N. Stojanovic, K. Tiedtke, R. Treusch, M. Vogt, M. Wieland, W. Wurth, S. Wesch, M. Yan, M.V. Yurkov, H. Zacharias, S. Schreiber,
442 442  //Development of experimental techniques for the characterization of ultrashort photon pulses of extreme ultraviolet free-electron lasers//,
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504 504  
505 505  === **j) Wavefront Sensor and Wigner Distribution measurements** ===
506 506  
507 -*
508 -** ===
509 -
510 -1. B. Keitel, E. Plönjes, S. Kreis, M. Kuhlmann, K. Tiedtke, T. Mey, B. Schäfer, K. Mann,
481 +1. Barbara Keitel, Jaromír Chalupský, Šimon Jelínek, Tomáš Burian, Siarhei Dziarzhytski, Věra Hájková, Libor Juha, Zuzana Kuglerová, Marion Kuhlmann, Klaus Mann, Mabel Ruiz-Lopez, Bernd Schäfer, Vojtěch Vozda, Thomas Wodzinski, Mikhail V. Yurkov, and Elke Plönjes,
482 +//Comparison of wavefront sensing and ablation imprinting for FEL focus diagnostics at FLASH2//,
483 +Opt. Express **32**, 21532-21552 (2024); [[https:~~/~~/doi.org/10.1364/OE.527418>>url:https://doi.org/10.1364/OE.527418]]
484 +1. (((
485 +B. Keitel, E. Plönjes, S. Kreis, M. Kuhlmann, K. Tiedtke, T. Mey, B. Schäfer, K. Mann,
511 511  //Hartmann wavefront sensors and their application at FLASH//,
512 512  Proc. PhotonDiag2015,
513 513  J. Synchrotron Rad. **23**, 43-49 (2016);
514 514  [[http:~~/~~/dx.doi.org/10.1107/S1600577515020354>>url:http://dx.doi.org/10.1107/S1600577515020354||shape="rect"]]
490 +)))
491 +
492 +{{expand title="Further References: click here to expand..."}}
493 +1.
515 515  1. K. Mann, B. Flöter, T. Mey, B. Schäfer, B. Keitel, E. Plönjes, K. Tiedtke,
516 516  //Hartmann wavefront sensor for EUV radiation//,
517 517  Proc. SPIE **8679**, Extreme Ultraviolet (EUV) Lithography IV, 867922 (April 1, 2013);
518 518  [[http:~~/~~/dx.doi.org/10.1117/12.2011508>>url:http://dx.doi.org/10.1117/12.2011508||shape="rect"]]
519 -
520 -{{expand title="Further References: click here to expand..."}}
521 521  1. T. Mey, //Radiation characteristics of extreme UV and soft X-ray sources//
522 522  PhD Thesis, Georg-August-Universität Göttingen.
523 523  Göttingen Series in X-ray Physics; 15 (2015), Universitätsverlag Göttingen, Göttingen, ISBN13: 978-3-86395-211-2;
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559 559  //Femtosecond-precision synchronization of the pump-probe optical laser for user experiments at FLASH//,
560 560  Proc. SPIE **8778**, Advances in X-ray Free-Electron Lasers II: Instrumentation, 87780R (May 3, 2013);
561 561  [[http:~~/~~/dx.doi.org/10.1117/12.2021572>>url:http://dx.doi.org/10.1117/12.2021572||shape="rect"]]
562 -
563 563  
564 564  **c) pump-probe data analysis**
565 565  
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623 623  //Total reflection amorphous carbon mirrors for vacuum ultraviolet free electron lasers//,
624 624  Appl. Phys. Lett. **84**, 657-659 (2004);
625 625  [[__http:~~/~~/dx.doi.org/10.1063/1.1645320__>>url:http://dx.doi.org/10.1063/1.1645320||shape="rect"]]
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