Home > Publications database > Controlled molecule injector for cold, dense, and pure molecular beams at the European x-ray free-electron laser > print |
001 | 617691 | ||
005 | 20250715171520.0 | ||
024 | 7 | _ | |a 10.1063/5.0219086 |2 doi |
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024 | 7 | _ | |a 1527-2400 |2 ISSN |
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100 | 1 | _ | |a He, Lanhai |0 P:(DE-H253)PIP1081973 |b 0 |
245 | _ | _ | |a Controlled molecule injector for cold, dense, and pure molecular beams at the European x-ray free-electron laser |
260 | _ | _ | |a [Erscheinungsort nicht ermittelbar] |c 2024 |b American Institute of Physics |
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336 | 7 | _ | |a ARTICLE |2 BibTeX |
336 | 7 | _ | |a JOURNAL_ARTICLE |2 ORCID |
336 | 7 | _ | |a Journal Article |0 0 |2 EndNote |
500 | _ | _ | |a Open Access |
520 | _ | _ | |a A permanently available molecular-beam injection setup for controlled molecules (COMO) was installed and commissioned at the small quantum systems (SQS) instrument at the European x-ray free-electron laser (EuXFEL). A b-type electrostatic deflector allows for pure state-, size-, and isomer-selected samples of polar molecules and clusters. The source provides a rotationally cold (T ≈ 1 K) and dense (ρ ≈ 108 cm−3) molecular beam with pulse durations up to 100 µs generated by a new version of the Even-Lavie valve. Here, a performance overview of the COMO setup is presented along with characterization experiments performed both with an optical laser at the Center for Free-Electron-Laser Science and with x rays at EuXFEL under burst-mode operation. COMO was designed to be attached to different instruments at the EuXFEL, in particular, the SQS and single particles, clusters, and biomolecules (SPB) instruments. This advanced controlled-molecules injection setup enables x-ray free-electron laser studies using highly defined samples with soft and hard x-ray FEL radiation for applications ranging from atomic, molecular, and cluster physics to elementary processes in chemistry and biology. |
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536 | _ | _ | |a DFG project G:(GEPRIS)194651731 - EXC 1074: Hamburger Zentrum für ultraschnelle Beobachtung (CUI): Struktur, Dynamik und Kontrolle von Materie auf atomarer Skala (194651731) |0 G:(GEPRIS)194651731 |c 194651731 |x 1 |
536 | _ | _ | |a DFG project G:(GEPRIS)390715994 - EXC 2056: CUI: Advanced Imaging of Matter (390715994) |0 G:(GEPRIS)390715994 |c 390715994 |x 2 |
536 | _ | _ | |a MEDEA - Molecular Electron Dynamics investigated by IntensE Fields and Attosecond Pulses (641789) |0 G:(EU-Grant)641789 |c 641789 |f H2020-MSCA-ITN-2014 |x 3 |
536 | _ | _ | |a HIRS-0018 - Helmholtz-Lund International School - Intelligent instrumentation for exploring matter at different time and length scales (HELIOS) (2020_HIRS-0018) |0 G:(DE-HGF)2020_HIRS-0018 |c 2020_HIRS-0018 |x 4 |
536 | _ | _ | |a 05K22GUA - Verbundprojekt 05K2022 - 2021-05992 UDIET: Ultraschnelle Dynamik des intermolekularen Energietransfers: elementare Schritte in Aerosolen und Flüssigchemie (BMBF-05K22GUA) |0 G:(DE-Ds200)BMBF-05K22GUA |c BMBF-05K22GUA |f 05K22GUA |x 5 |
536 | _ | _ | |a DFG project G:(GEPRIS)509471550 - Dynamik photoionisations-induzierter Prozesse in laser-präparierten Molekülen in der Gasphase und der wässrigen Phase (509471550) |0 G:(GEPRIS)509471550 |c 509471550 |x 6 |
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693 | _ | _ | |a XFEL |e SQS: Small Quantum Systems |f SASE3 |1 EXP:(DE-H253)XFEL-20150101 |0 EXP:(DE-H253)XFEL-SQS-20150101 |5 EXP:(DE-H253)XFEL-SQS-20150101 |6 EXP:(DE-H253)XFEL-SASE3-20150101 |x 0 |
693 | _ | _ | |a XFEL |e SPB: Single Particles, clusters & Biomolecules |f SASE1 |1 EXP:(DE-H253)XFEL-20150101 |0 EXP:(DE-H253)XFEL-SPB-20150101 |5 EXP:(DE-H253)XFEL-SPB-20150101 |6 EXP:(DE-H253)XFEL-SASE1-20150101 |x 1 |
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700 | 1 | _ | |a Trippel, Sebastian |0 P:(DE-H253)PIP1013309 |b 28 |e Corresponding author |
700 | 1 | _ | |a Küpper, Jochen |0 P:(DE-H253)PIP1012175 |b 29 |e Corresponding author |
773 | 1 | 8 | |a 10.1063/5.0219086 |b AIP Publishing |d 2024-11-01 |n 11 |3 journal-article |2 Crossref |t Review of Scientific Instruments |v 95 |y 2024 |x 0034-6748 |
773 | _ | _ | |a 10.1063/5.0219086 |g Vol. 95, no. 11, p. 113301 |0 PERI:(DE-600)1472905-2 |n 11 |p 113301 |t Review of scientific instruments |v 95 |y 2024 |x 0034-6748 |
856 | 4 | _ | |u https://pubs.aip.org/aip/rsi/article/95/11/113301/3320596/Controlled-molecule-injector-for-cold-dense-and |
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999 | C | 5 | |a 10.1038/nphoton.2010.239 |9 -- missing cx lookup -- |p 814 - |2 Crossref |t Nat. Photonics |v 4 |y 2010 |
999 | C | 5 | |a 10.1038/nphoton.2010.176 |9 -- missing cx lookup -- |p 641 - |2 Crossref |t Nat. Photonics |v 4 |y 2010 |
999 | C | 5 | |a 10.1016/j.nimb.2011.04.034 |9 -- missing cx lookup -- |p 2845 - |2 Crossref |t Nucl. Instrum. Methods Phys. Res., Sect. B |v 269 |y 2011 |
999 | C | 5 | |a 10.1038/nphoton.2012.141 |9 -- missing cx lookup -- |p 540 - |2 Crossref |t Nat. Photonics |v 6 |y 2012 |
999 | C | 5 | |a 10.3390/app7070720 |9 -- missing cx lookup -- |p 720 - |2 Crossref |t Appl. Sci. |v 7 |y 2017 |
999 | C | 5 | |a 10.1038/s41566-017-0029-8 |9 -- missing cx lookup -- |p 708 - |2 Crossref |t Nat. Photonics |v 11 |y 2017 |
999 | C | 5 | |a 10.1038/nphoton.2013.277 |9 -- missing cx lookup -- |p 913 - |2 Crossref |t Nat. Photonics |v 7 |y 2013 |
999 | C | 5 | |a 10.1038/s41566-018-0107-6 |9 -- missing cx lookup -- |p 215 - |2 Crossref |t Nat. Photonics |v 12 |y 2018 |
999 | C | 5 | |a 10.1038/s41566-020-0607-z |9 -- missing cx lookup -- |p 391 - |2 Crossref |t Nat. Photonics |v 14 |y 2020 |
999 | C | 5 | |a 10.1016/j.nima.2009.12.053 |9 -- missing cx lookup -- |p 483 - |2 Crossref |t Nucl. Instrum. Methods Phys. Res., Sect. A |v 614 |y 2010 |
999 | C | 5 | |a 10.3390/app7060607 |9 -- missing cx lookup -- |p 607 - |2 Crossref |t Appl. Sci. |v 7 |y 2017 |
999 | C | 5 | |a 10.1088/1361-6455/aa9735 |9 -- missing cx lookup -- |p 032003 - |2 Crossref |t J. Phys. B: At., Mol. Opt. Phys. |v 51 |y 2018 |
999 | C | 5 | |a 10.1107/s1600577518008585 |9 -- missing cx lookup -- |p 1529 - |2 Crossref |t J. Synchrotron Radiat. |v 25 |y 2018 |
999 | C | 5 | |a 10.1107/s1600577520015659 |9 -- missing cx lookup -- |p 576 - |2 Crossref |t J. Synchrotron Radiat. |v 28 |y 2021 |
999 | C | 5 | |a 10.1038/nature09177 |9 -- missing cx lookup -- |p 56 - |2 Crossref |t Nature |v 466 |y 2010 |
999 | C | 5 | |a 10.1038/nphoton.2012.261 |9 -- missing cx lookup -- |p 858 - |2 Crossref |t Nat. Photonics |v 6 |y 2012 |
999 | C | 5 | |a 10.1088/0953-4075/46/16/164002 |9 -- missing cx lookup -- |p 164002 - |2 Crossref |t J. Phys. B: At., Mol. Opt. Phys. |v 46 |y 2013 |
999 | C | 5 | |a 10.1126/science.abc2622 |9 -- missing cx lookup -- |p 1630 - |2 Crossref |t Science |v 369 |y 2020 |
999 | C | 5 | |a 10.1103/physrevlett.127.093202 |9 -- missing cx lookup -- |p 093202 - |2 Crossref |t Phys. Rev. Lett. |v 127 |y 2021 |
999 | C | 5 | |a 10.1103/physrevlett.127.103201 |9 -- missing cx lookup -- |p 103201 - |2 Crossref |t Phys. Rev. Lett. |v 127 |y 2021 |
999 | C | 5 | |a 10.1038/s41467-021-26193-z |9 -- missing cx lookup -- |p 6107 - |2 Crossref |t Nat. Commun. |v 12 |y 2021 |
999 | C | 5 | |a 10.1051/radium:0191100804014201 |9 -- missing cx lookup -- |p 592 - |2 Crossref |t C. R. Hebd. Seances Acad. Sci. |v 152 |y 1911 |
999 | C | 5 | |a 10.1007/bf01451746 |9 -- missing cx lookup -- |p 751 - |2 Crossref |t Z. Phys. |v 39 |y 1926 |
999 | C | 5 | |y 1922 |2 Crossref |o 1922 |
999 | C | 5 | |a 10.1007/bf01330773 |9 -- missing cx lookup -- |p 4 - |2 Crossref |t Z. Phys. |v 85 |y 1933 |
999 | C | 5 | |a 10.1103/PhysRev.55.526 |9 -- missing cx lookup -- |p 526 - |2 Crossref |t Phys. Rev. |v 55 |y 1939 |
999 | C | 5 | |a 10.1039/df9623300149 |9 -- missing cx lookup -- |p 149 - |2 Crossref |t Discuss. Faraday Soc. |v 33 |y 1962 |
999 | C | 5 | |a 10.1103/physrev.99.1264 |9 -- missing cx lookup -- |p 1264 - |2 Crossref |t Phys. Rev. |v 99 |y 1955 |
999 | C | 5 | |a 10.1038/nphys1031 |9 -- missing cx lookup -- |p 595 - |2 Crossref |t Nat. Phys. |v 4 |y 2008 |
999 | C | 5 | |a 10.1021/cr200349r |9 -- missing cx lookup -- |p 4828 - |2 Crossref |t Chem. Rev. |v 112 |y 2012 |
999 | C | 5 | |a 10.1080/0144235X.2015.1077838 |9 -- missing cx lookup -- |2 Crossref |u Y.-P. Chang , D. A.Horke, S.Trippel, and J.Küpper, “Spatially-controlled complex molecules and their applications,” Int. Rev. Phys. Chem.34, 557–590 (2015); arXiv:1505.05632 [physics].10.1080/0144235x.2015.1077838 |
999 | C | 5 | |a 10.1038/nchem.1860 |9 -- missing cx lookup -- |p 216 - |2 Crossref |t Nat. Chem. |v 6 |y 2014 |
999 | C | 5 | |a 10.1126/science.1229141 |9 -- missing cx lookup -- |p 234 - |2 Crossref |t Science |v 338 |y 2012 |
999 | C | 5 | |a 10.1021/jp502989g |9 -- missing cx lookup -- |p 3875 - |2 Crossref |t J. Phys. Chem. A |v 118 |y 2014 |
999 | C | 5 | |a 10.1103/PhysRevLett.100.133003 |9 -- missing cx lookup -- |2 Crossref |u F. Filsinger , U.Erlekam, G.von Helden, J.Küpper, and G.Meijer, “Selector for structural isomers of neutral molecules,” Phys. Rev. Lett.100, 133003 (2008); arXiv:0802.2795 [physics].10.1103/physrevlett.100.133003 |
999 | C | 5 | |a 10.1002/anie.200902650 |9 -- missing cx lookup -- |p 6900 - |2 Crossref |t Angew. Chem., Int. Ed. |v 48 |y 2009 |
999 | C | 5 | |a 10.1063/1.5026145 |9 -- missing cx lookup -- |2 Crossref |u S. Trippel , M.Johny, T.Kierspel, J.Onvlee, H.Bieker, H.Ye, T.Mullins, L.Gumprecht, K.Długołęcki, and J.Küpper, “Note: Knife edge skimming for improved separation of molecular species by the deflector,” Rev. Sci. Instrum.89, 096110 (2018); arXiv:1802.04053 [physics].10.1063/1.5026145 |
999 | C | 5 | |a 10.1126/science.1242271 |9 -- missing cx lookup -- |2 Crossref |u Y.-P. Chang , K.Długołęcki, J.Küpper, D.Rösch, D.Wild, and S.Willitsch, “Specific chemical reactivities of spatially separated 3-aminophenol conformers with cold Ca+ ions,” Science342, 98–101 (2013); arXiv:1308.6538 [physics].10.1126/science.1242271 |
999 | C | 5 | |a 10.1002/anie.201807646 |9 -- missing cx lookup -- |2 Crossref |u N. Teschmit , D. A.Horke, and J.Küpper, “Spatially separating the conformers of a dipeptide,” Angew. Chem., Int. Ed.57, 13775–13779 (2018); arXiv:1805.12396 [physics].10.1002/anie.201807646 |
999 | C | 5 | |a 10.1038/s41467-022-33901-w |9 -- missing cx lookup -- |p 7462 - |2 Crossref |t Nat. Commun. |v 13 |y 2022 |
999 | C | 5 | |a 10.1103/revmodphys.75.543 |9 -- missing cx lookup -- |p 543 - |2 Crossref |t Rev. Mod. Phys. |v 75 |y 2003 |
999 | C | 5 | |a 10.1103/PhysRevLett.102.023001 |9 -- missing cx lookup -- |2 Crossref |u L. Holmegaard , J. H.Nielsen, I.Nevo, H.Stapelfeldt, F.Filsinger, J.Küpper, and G.Meijer, “Laser-induced alignment and orientation of quantum-state-selected large molecules,” Phys. Rev. Lett.102, 023001 (2009); arXiv:0810.2307 [physics].10.1103/physrevlett.102.023001 |
999 | C | 5 | |a 10.1038/nphys1225 |9 -- missing cx lookup -- |p 289 - |2 Crossref |t Nat. Phys. |v 5 |y 2009 |
999 | C | 5 | |a 10.1038/s41467-022-28951-z |9 -- missing cx lookup -- |2 Crossref |u T. Mullins , E. T.Karamatskos, J.Wiese, J.Onvlee, A.Rouzée, A.Yachmenev, S.Trippel, and J.Küpper, “Picosecond pulse-shaping for strong three-dimensional field-free alignment of generic asymmetric-top molecules,” Nat. Commun.13, 1431 (2022); arXiv:2009.08157 [physics].10.1038/s41467-022-28951-z |
999 | C | 5 | |a 10.1063/1.5023645 |9 -- missing cx lookup -- |2 Crossref |u S. Trippel , J.Wiese, T.Mullins, and J.Küpper, “Communication: Strong laser alignment of solvent-solute aggregates in the gas-phase,” J. Chem. Phys.148, 101103 (2018); arXiv:1801.08789 [physics].10.1063/1.5023645 |
999 | C | 5 | |a 10.1103/physrevlett.92.198102 |9 -- missing cx lookup -- |p 198102 - |2 Crossref |t Phys. Rev. Lett. |v 92 |y 2004 |
999 | C | 5 | |a 10.1103/physrevlett.109.133202 |9 -- missing cx lookup -- |p 133202 - |2 Crossref |t Phys. Rev. Lett. |v 109 |y 2012 |
999 | C | 5 | |a 10.1103/PhysRevLett.112.083002 |9 -- missing cx lookup -- |2 Crossref |u J. Küpper , S.Stern, L.Holmegaard, F.Filsinger, A.Rouzée, A.Rudenko, P.Johnsson, A. V.Martin, M.Adolph, A.Aquila, S.Bajt, A.Barty, C.Bostedt, J.Bozek, C.Caleman, R.Coffee, N.Coppola, T.Delmas, S.Epp, B.Erk, L.Foucar, T.Gorkhover, L.Gumprecht, A.Hartmann, R.Hartmann, G.Hauser, P.Holl, A.Hömke, N.Kimmel, F.Krasniqi, K.-U.Kühnel, J.Maurer, M.Messerschmidt, R.Moshammer, C.Reich, B.Rudek, R.Santra, I.Schlichting, C.Schmidt, S.Schorb, J.Schulz, H.Soltau, J. C. H.Spence, D.Starodub, L.Strüder, J.Thøgersen, M. J. J.Vrakking, G.Weidenspointner, T. A.White, C.Wunderer, G.Meijer, J.Ullrich, H.Stapelfeldt, D.Rolles, and H. N.Chapman, “X-ray diffraction from isolated and strongly aligned gas-phase molecules with a free-electron laser,” Phys. Rev. Lett.112, 083002 (2014); arXiv:1307.4577 [physics].10.1103/physrevlett.112.083002 |
999 | C | 5 | |a 10.1146/annurev-physchem-032511-143708 |9 -- missing cx lookup -- |p 415 - |2 Crossref |t Annu. Rev. Phys. Chem. |v 64 |y 2013 |
999 | C | 5 | |a 10.1038/s41467-021-25770-6 |9 -- missing cx lookup -- |p 5441 - |2 Crossref |t Nat. Commun. |v 12 |y 2021 |
999 | C | 5 | |a 10.1146/annurev-physchem-082720-010539 |9 -- missing cx lookup -- |p 21 - |2 Crossref |t Annu. Rev. Phys. Chem. |v 73 |y 2022 |
999 | C | 5 | |a 10.1140/epjp/s13360-023-03814-8 |9 -- missing cx lookup -- |p 193 - |2 Crossref |t Eur. Phys. J. Plus |v 138 |y 2023 |
999 | C | 5 | |a 10.2172/1630267 |y 2015 |2 Crossref |9 -- missing cx lookup -- |
999 | C | 5 | |a 10.1063/1.4991479 |9 -- missing cx lookup -- |p 024304 - |2 Crossref |t J. Chem. Phys. |v 147 |y 2017 |
999 | C | 5 | |a 10.1140/epjti/s40485-015-0027-5 |9 -- missing cx lookup -- |p 17 - |2 Crossref |t Eur. Phys. J. Tech. Instrum. |v 2 |y 2015 |
999 | C | 5 | |a 10.1063/1.3194287 |9 -- missing cx lookup -- |2 Crossref |u F. Filsinger , J.Küpper, G.Meijer, L.Holmegaard, J. H.Nielsen, I.Nevo, J. L.Hansen, and H.Stapelfeldt, “Quantum-state selection, alignment, and orientation of large molecules using static electric and laser fields,” J. Chem. Phys.131, 064309 (2009); arXiv:0903.5413 [physics].10.1063/1.3194287 |
999 | C | 5 | |a 10.3390/app7060592 |9 -- missing cx lookup -- |p 592 - |2 Crossref |t Appl. Sci. |v 7 |y 2017 |
999 | C | 5 | |a 10.1016/j.cplett.2019.01.052 |9 -- missing cx lookup -- |2 Crossref |u M. Johny , J.Onvlee, T.Kierspel, H.Bieker, S.Trippel, and J.Küpper, “Spatial separation of pyrrole and pyrrole-water clusters,” Chem. Phys. Lett.721, 149–152 (2019); arXiv:1901.05267 [physics].10.1016/j.cplett.2019.01.052 |
999 | C | 5 | |a 10.1021/je60051a008 |9 -- missing cx lookup -- |p 408 - |2 Crossref |t J. Chem. Eng. Data |v 16 |y 1971 |
999 | C | 5 | |a 10.1063/1.4824155 |9 -- missing cx lookup -- |p 154202 - |2 Crossref |t J. Chem. Phys. |v 139 |y 2013 |
999 | C | 5 | |a 10.1016/j.cpc.2013.09.001 |9 -- missing cx lookup -- |p 339 - |2 Crossref |t Comput. Phys. Commun. |v 185 |y 2014 |
999 | C | 5 | |a 10.1039/D3CP03471B |9 -- missing cx lookup -- |2 Crossref |u M. Johny , C. A.Schouder, A.Al-Refaie, L.He, J.Wiese, H.Stapelfeldt, S.Trippel, and J.Küpper, “Water is a radiation protection agent for ionised pyrrole,” Phys. Chem. Chem. Phys.26, 13118–13130 (2024); arXiv:2010.00453 [physics].10.1039/d3cp03471b |
999 | C | 5 | |a 10.1103/physreva.64.013405 |9 -- missing cx lookup -- |p 013405 - |2 Crossref |t Phys. Rev. A |v 64 |y 2001 |
999 | C | 5 | |a 10.1088/1367-2630/ab34e8 |9 -- missing cx lookup -- |2 Crossref |u J. Wiese , J.-F.Olivieri, A.Trabattoni, S.Trippel, and J.Küpper, “Strong-field photoelectron momentum imaging of OCS at finely resolved incident intensities,” New J. Phys.21, 083011 (2019); arXiv:1904.07519 [physics].10.1088/1367-2630/ab34e8 |
999 | C | 5 | |a 10.1063/1.5022564 |9 -- missing cx lookup -- |p 045112 - |2 Crossref |t Rev. Sci. Instrum. |v 89 |y 2018 |
999 | C | 5 | |a 10.1103/PhysRevA.86.033202 |9 -- missing cx lookup -- |2 Crossref |u S. Trippel , Y.-P.Chang, S.Stern, T.Mullins, L.Holmegaard, and J.Küpper, “Spatial separation of state- and size-selected neutral clusters,” Phys. Rev. A86, 033202 (2012); arXiv:1208.4935 [physics].10.1103/physreva.86.033202 |
999 | C | 5 | |a 10.1038/nphys1666 |9 -- missing cx lookup -- |p 428 - |2 Crossref |t Nat. Phys. |v 6 |y 2010 |
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