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@ARTICLE{Richard:622139,
      author       = {Richard, Benoit and Boll, Rebecca and Banerjee, Sourav and
                      Schaefer, Julia and Jurek, Zoltan and Kastirke, Gregor and
                      Fehre, Kilian and Schoeffler, Markus and Anders, Nils and
                      Baumann, Thomas and Eckart, Sebastian and Erk, Benjamin and
                      De Fanis, Alberto and Doerner, Reinhard and Grundmann, Sven
                      and Grychtol, Patrik and Hofmann, Max and Ilchen, Markus and
                      Kircher, Max and Kubicek, Katharina and Kunitski, Maxim and
                      Li, Xiang and Mazza, Tommaso and Meister, Severin and
                      Melzer, Niklas and Montano, Jacobo and Music, Valerija and
                      Ovcharenko, Yevheniy and Passow, Christopher and Pier,
                      Andreas and Rennhack, Nils and Rist, Jonas and Rivas, Daniel
                      and Rolles, Daniel and Schlichting, Ilme and Schmidt, Lothar
                      and Schmidt, Philipp and Trabert, Daniel and Trinter,
                      Florian and Wagner, Rene and Walter, Peter and Ziolkowski,
                      Pawel and Rudenko, Artem and Meyer, Michael and Santra,
                      Robin and Inhester, Ludger and Jahnke, Till},
      title        = {{I}maging collective quantum fluctuations of the structure
                      of acomplex molecule},
      journal      = {Science / Science now},
      volume       = {389},
      number       = {6760},
      issn         = {0036-8075},
      address      = {Washington, DC},
      publisher    = {Assoc.},
      reportid     = {PUBDB-2025-00204},
      pages        = {650 - 654},
      year         = {2025},
      note         = {ISSN 1095-9203 not unique: **3 hits**.},
      abstract     = {Because of the Heisenberg uncertainty principle, the
                      structure of a molecule fluctuates about its mean geometry,
                      even in the ground state. Observing this fundamental quantum
                      effect experimentally—particularly, revealing the
                      collective nature of the structural quantum
                      fluctuations—remains an unmet challenge for complex
                      molecules. In this work, we achieved this for an 11-atom
                      molecule by inducing its Coulomb explosion with an x-ray
                      free-electron laser. We show that the structural
                      fluctuations manifest themselves in correlated variations of
                      ion momenta obtained through coincident detection of the
                      atomic fragments from individual molecules. Our analysis
                      scheme allows extracting these variations, despite our
                      measurements covering only a fraction of the full
                      33-dimensional momentum space, thereby establishing a
                      general approach for extracting information on
                      high-dimensional structural dynamics using Coulomb
                      explosion.},
      cin          = {FS-CFEL-3 / CFEL-DESYT},
      ddc          = {320},
      cid          = {I:(DE-H253)FS-CFEL-3-20120731 /
                      I:(DE-H253)CFEL-DESYT-20160930},
      pnm          = {631 - Matter – Dynamics, Mechanisms and Control
                      (POF4-631) / AIM, DFG project G:(GEPRIS)390715994 - EXC
                      2056: CUI: Advanced Imaging of Matter (390715994) / DFG
                      project G:(GEPRIS)509471550 - Dynamik
                      photoionisations-induzierter Prozesse in laser-präparierten
                      Molekülen in der Gasphase und der wässrigen Phase
                      (509471550) / DFG project G:(GEPRIS)497431350 - Funktionale
                      Photoschalter bei Zimmertemperatur: Fernsteuerung
                      metallischer elektronischer und Spinänderungen mittels
                      Ligandendynamik (497431350)},
      pid          = {G:(DE-HGF)POF4-631 / G:(GEPRIS)390715994 /
                      G:(GEPRIS)509471550 / G:(GEPRIS)497431350},
      experiment   = {EXP:(DE-H253)XFEL-SQS-20150101},
      typ          = {PUB:(DE-HGF)16},
      pubmed       = {pmid:40773565},
      doi          = {10.1126/science.adu2637},
      url          = {https://bib-pubdb1.desy.de/record/622139},
}