Home > Publications database > Coherence properties from speckle contrast analysis at the European XFEL > print |
001 | 491409 | ||
005 | 20250715180038.0 | ||
024 | 7 | _ | |a 10.1088/1742-6596/2380/1/012085 |2 doi |
024 | 7 | _ | |a 1742-6588 |2 ISSN |
024 | 7 | _ | |a 1742-6596 |2 ISSN |
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037 | _ | _ | |a PUBDB-2023-00133 |
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100 | 1 | _ | |a Dallari, F. |0 P:(DE-H253)PIP1027104 |b 0 |u desy |
111 | 2 | _ | |a 14th International Conference on Synchrotron Radiation Instrumentation |g (SRI2021) |c Hamburg |d 2022-03-28 - 2022-04-01 |w Germany |
245 | _ | _ | |a Coherence properties from speckle contrast analysis at the European XFEL |
260 | _ | _ | |a Bristol |c 2022 |b IOP Publ. |
300 | _ | _ | |a 7 |
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520 | _ | _ | |a We show the results of speckle contrast analysis at the MID instrument of European XFEL in the hard X-ray regime. Speckle patterns measured from static colloidal samples are compared to results previously obtained at the SPB/SFX instrument. A high degree of coherence of 0.79 is obtained by modelling the q-dependence of the speckle contrast, that corresponds to a number of coherent modes of M = 1.7. Furthermore, the variation of contrast over many pulse trains is exceptional low, resulting in a degree of coherence with a relative standard deviation below 0.1. Our results demonstrate the high stability of coherence properties at European XFEL over many X-ray pulses and pulse trains which is a prerequisite for coherence-based techniques such as MHz X-ray photon correlation spectroscopy. |
536 | _ | _ | |a 631 - Matter – Dynamics, Mechanisms and Control (POF4-631) |0 G:(DE-HGF)POF4-631 |c POF4-631 |f POF IV |x 0 |
588 | _ | _ | |a Dataset connected to CrossRef, Journals: bib-pubdb1.desy.de |
693 | _ | _ | |a XFEL |e MID: Materials Imaging and Dynamics |f SASE2 |1 EXP:(DE-H253)XFEL-20150101 |0 EXP:(DE-H253)XFEL-MID-20150101 |5 EXP:(DE-H253)XFEL-MID-20150101 |6 EXP:(DE-H253)XFEL-SASE2-20150101 |x 0 |
700 | 1 | _ | |a Lokteva, I. |0 P:(DE-H253)PIP1023300 |b 1 |
700 | 1 | _ | |a Moeller, Johannes |0 P:(DE-H253)PIP1011895 |b 2 |
700 | 1 | _ | |a Jain, Avni |0 P:(DE-H253)PIP1025396 |b 3 |
700 | 1 | _ | |a Roseker, W. |0 P:(DE-H253)PIP1004234 |b 4 |u desy |
700 | 1 | _ | |a Westermeier, F. |0 P:(DE-H253)PIP1006002 |b 5 |u desy |
700 | 1 | _ | |a Goy, C. |0 P:(DE-H253)PIP1025570 |b 6 |u desy |
700 | 1 | _ | |a Boesenberg, U. |0 P:(DE-H253)PIP1008487 |b 7 |
700 | 1 | _ | |a Hallmann, Joerg |0 P:(DE-H253)PIP1008000 |b 8 |
700 | 1 | _ | |a Rodriguez-Fernandez, A. |0 P:(DE-H253)PIP1009193 |b 9 |
700 | 1 | _ | |a Scholz, Markus |0 P:(DE-H253)PIP1021265 |b 10 |u desy |
700 | 1 | _ | |a Shayduk, R. |0 P:(DE-H253)PIP1020958 |b 11 |
700 | 1 | _ | |a Madsen, Anders |0 P:(DE-H253)PIP1013485 |b 12 |
700 | 1 | _ | |a Grübel, G. |0 P:(DE-H253)PIP1000392 |b 13 |u desy |
700 | 1 | _ | |a Lehmkühler, F. |0 P:(DE-H253)PIP1008819 |b 14 |e Corresponding author |u desy |
773 | _ | _ | |a 10.1088/1742-6596/2380/1/012085 |g Vol. 2380, no. 1, p. 012085 - |0 PERI:(DE-600)2166409-2 |n 1 |p 012085 |t Journal of physics / Conference Series |v 2380 |y 2022 |x 1742-6588 |
787 | 0 | _ | |a Laasch, Wiebke et.al. |d Bristol : IOP, 2022 |i HasPart |0 PUBDB-2023-00086 |r |t 14th International Conference on Synchrotron Radiation Instrumentation |
856 | 4 | _ | |u https://bib-pubdb1.desy.de/record/491409/files/2022-Dallari_2022_J._Phys.__Conf._Ser._2380_012085.pdf |y OpenAccess |
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