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@ARTICLE{Schnorr:167778,
author = {Schnorr, K. and Senftleben, A. and Kurka, M. and Rudenko,
A. and Foucar, L. and Schmid, G. and Broska, A. and Pfeifer,
T. and Meyer, K. and Anielski, D. and Boll, R. and Rolles,
D. and Kübel, M. and Kling, M. F. and Jiang, Y. H. and
Mondal, S. and Tachibana, T. and Ueda, K. and Marchenko, T.
and Simon, M. and Brenner, G. and Treusch, R. and Scheit, S.
and Averbukh, V. and Ullrich, J. and Schröter, C. D. and
Moshammer, R.},
title = {{T}ime-{R}esolved {M}easurement of {I}nteratomic
{C}oulombic {D}ecay in $\mathrm{{N}e_{2}}$},
journal = {Physical review letters},
volume = {111},
number = {9},
issn = {1079-7114},
address = {College Park, Md.},
publisher = {APS},
reportid = {DESY-2014-02109},
pages = {093402},
year = {2013},
abstract = {The lifetime of interatomic Coulombic decay (ICD) [L. S.
Cederbaum et al., Phys. Rev. Lett. 79, 4778 (1997)] in Ne2
is determined via an extreme ultraviolet pump-probe
experiment at the Free-Electron Laser in Hamburg. The pump
pulse creates a 2s inner-shell vacancy in one of the two Ne
atoms, whereupon the ionized dimer undergoes ICD resulting
in a repulsive Ne+(2p−1)−Ne+(2p−1) state, which is
probed with a second pulse, removing a further electron. The
yield of coincident Ne+−Ne2+ pairs is recorded as a
function of the pump-probe delay, allowing us to deduce the
ICD lifetime of the Ne+2(2s−1) state to be
(150±50) fs, in agreement with quantum calculations.},
cin = {DOOR / FS-FL / FS-SCS},
ddc = {550},
cid = {I:(DE-H253)HAS-User-20120731 / I:(DE-H253)FS-FL-20120731 /
I:(DE-H253)FS-SCS-20131031},
pnm = {FLASH Beamline BL3 (POF2-54G16)},
pid = {G:(DE-H253)POF2-BL3-20130405},
experiment = {EXP:(DE-H253)F-BL3-20150101},
typ = {PUB:(DE-HGF)16},
UT = {WOS:000323610800014},
pubmed = {pmid:24033032},
doi = {10.1103/PhysRevLett.111.093402},
url = {https://bib-pubdb1.desy.de/record/167778},
}