% 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{Gorman:617526, author = {Gorman, Martin and McGonegle, D. and Smith, R. F. and Singh, S. and Jenkins, T. and McWilliams, R. S. and Albertazzi, B. and Ali, S. J. and Antonelli, L. and Armstrong, M. R. and Baehtz, C. and Ball, O. B. and Banerjee, S. and Belonoshko, A. B. and Benuzzi-Mounaix, A. and Bolme, C. A. and Bouffetier, V. and Briggs, R. and Buakor, K. and Butcher, T. and Di Dio Cafiso, S. and Cerantola, V. and Chantel, J. and Di Cicco, A. and Clarke, S. and Coleman, A. L. and Collier, J. and Collins, G. W. and Comley, A. J. and Coppari, F. and Cowan, T. E. and Cristoforetti, G. and Cynn, H. and Descamps, A. and Dorchies, F. and Duff, M. J. and Dwivedi, Anand and Edwards, C. and Eggert, J. H. and Errandonea, D. and Fiquet, G. and Galtier, E. and Laso Garcia, A. and Ginestet, H. and Gizzi, L. and Gleason, A. and Goede, S. and Gonzalez, J. M. and Harmand, M. and Hartley, N. J. and Heighway, P. G. and Hernandez-Gomez, C. and Higginbotham, A. and Höppner, H. and Husband, Rachel and Hutchinson, T. M. and Hwang, Huijeong and Lazicki, A. E. and Keen, D. A. and Kim, J. and Koester, P. and Konopkova, Z. and Kraus, D. and Krygier, A. and Labate, L. and Lee, Y. and Liermann, H.-P. and Mason, P. and Masruri, M. and Massani, B. and McBride, E. E. and McGuire, C. and McHardy, J. D. and Merkel, S. and Morard, G. and Nagler, B. and Nakatsutsumi, M. and Nguyen-Cong, K. and Norton, A.-M. and Oleynik, I. I. and Otzen, C. and Ozaki, N. and Pandolfi, S. and Peake, D. J. and Pelka, A. and Pereira, K. A. and Phillips, J. P. and Prescher, C. and Preston, T. R. and Randolph, L. and Ranjan, D. and Ravasio, A. and Redmer, R. and Rips, J. and Santamaria-Perez, D. and Savage, D. J. and Schoelmerich, M. and Schwinkendorf, J.-P. and Smith, J. and Sollier, A. and Spear, J. and Spindloe, C. and Stevenson, M. and Strohm, C. and Suer, T.-A. and Tang, Minxue and Toncian, M. and Toncian, T. and Tracy, S. J. and Trapananti, A. and Tschentscher, T. and Tyldesley, M. and Vennari, C. E. and Vinci, T. and Vogel, S. C. and Volz, T. J. and Vorberger, J. and Walsh, J. P. S. and Wark, J. S. and Willman, J. T. and Wollenweber, L. and Zastrau, U. and Brambrink, E. and Appel, K. and McMahon, M. I.}, title = {{S}hock compression experiments using the {D}i{POLE} 100-{X} laser on the high energy density instrument at the {E}uropean x-ray free electron laser: {Q}uantitative structural analysis of liquid {S}n}, journal = {Journal of applied physics}, volume = {135}, number = {16}, issn = {0021-8979}, address = {Melville, NY}, publisher = {American Inst. of Physics}, reportid = {PUBDB-2024-06857}, pages = {165902}, year = {2024}, abstract = {X-ray free electron laser (XFEL) sources coupled to high-power laser systems offer an avenue to study the structural dynamics of materials at extreme pressures and temperatures. The recent commissioning of the DiPOLE 100-X laser on the high energy density (HED) instrument at the European XFEL represents the state-of-the-art in combining x-ray diffraction with laser compression, allowing for compressed materials to be probed in unprecedented detail. Here, we report quantitative structural measurements of molten Sn compressed to 85(5) GPa and ~ 3500K. The capabilities of the HED instrument enable liquid density measurements with an uncertainty of ~ $1\%$ at conditions which are extremely challenging to reach via static compression methods. We discuss best practices for conducting liquid diffraction dynamic compression experiments and the necessary intensity corrections which allow for accurate quantitative analysis. We also provide a polyimide ablation pressure vs input laser energy for the DiPOLE 100-X drive laser which will serve future users of the HED instrument.}, cin = {XFEL-User / FS-PETRA-D / FS-HIBEF / $XFEL_E1_HED$}, ddc = {530}, cid = {I:(DE-H253)XFEL-User-20170713 / I:(DE-H253)FS-PETRA-D-20210408 / I:(DE-H253)FS-HIBEF-20240110 / $I:(DE-H253)XFEL_E1_HED-20210408$}, pnm = {631 - Matter – Dynamics, Mechanisms and Control (POF4-631) / HotCores - High Temperature Dynamics of Metals and the Earth’s Solid Inner Core (101054994) / DFG project 505630685 - Untersuchung planetarer Eise mit Kompressionsexperimenten (505630685)}, pid = {G:(DE-HGF)POF4-631 / G:(EU-Grant)101054994 / G:(GEPRIS)505630685}, experiment = {EXP:(DE-H253)XFEL-SASE2-20150101}, typ = {PUB:(DE-HGF)16}, UT = {WOS:001214837500001}, doi = {10.1063/5.0201702}, url = {https://bib-pubdb1.desy.de/record/617526}, }