Angular momentum-induced delays in solid-state photoemission enhanced by intra-atomic interactions

Siek F, Neb S, Bartz P, Hensen M, Strüber C, Fiechter S, Torrent-Sucarrat M, Silkin VM, Krasovskii EE, Kabachnik NM, Fritzsche S, et al. (2017)
SCIENCE 357(6357): 1274-1277.

Zeitschriftenaufsatz | Veröffentlicht | Englisch
 
Download
Es wurden keine Dateien hochgeladen. Nur Publikationsnachweis!
Autor*in
Siek, Fabian; Neb, SergejUniBi; Bartz, PeterUniBi; Hensen, MatthiasUniBi; Strüber, ChristianUniBi; Fiechter, Sebastian; Torrent-Sucarrat, Miquel; Silkin, Vyacheslav M.; Krasovskii, Eugene E.; Kabachnik, Nikolay M.; Fritzsche, Stephan; Diez Muino, Ricardo
Alle
Abstract / Bemerkung
Attosecond time-resolved photoemission spectroscopy reveals that photoemission from solids is not yet fully understood. The relative emission delays between four photoemission channels measured for the van der Waals crystal tungsten diselenide (WSe2) can only be explained by accounting for both propagation and intra-atomic delays. The intra-atomic delay depends on the angular momentum of the initial localized state and is determined by intra-atomic interactions. For the studied case of WSe2, the photoemission events are time ordered with rising initial-state angular momentum. Including intra-atomic electron-electron interaction and angular momentum of the initial localized state yields excellent agreement between theory and experiment. This has required a revision of existing models for solid-state photoemission, and thus, attosecond time-resolved photoemission from solids provides important benchmarks for improved future photoemission models.
Erscheinungsjahr
2017
Zeitschriftentitel
SCIENCE
Band
357
Ausgabe
6357
Seite(n)
1274-1277
ISSN
0036-8075
eISSN
1095-9203
Page URI
https://pub.uni-bielefeld.de/record/2914412

Zitieren

Siek F, Neb S, Bartz P, et al. Angular momentum-induced delays in solid-state photoemission enhanced by intra-atomic interactions. SCIENCE. 2017;357(6357):1274-1277.
Siek, F., Neb, S., Bartz, P., Hensen, M., Strüber, C., Fiechter, S., Torrent-Sucarrat, M., et al. (2017). Angular momentum-induced delays in solid-state photoemission enhanced by intra-atomic interactions. SCIENCE, 357(6357), 1274-1277. doi:10.1126/science.aam9598
Siek, Fabian, Neb, Sergej, Bartz, Peter, Hensen, Matthias, Strüber, Christian, Fiechter, Sebastian, Torrent-Sucarrat, Miquel, et al. 2017. “Angular momentum-induced delays in solid-state photoemission enhanced by intra-atomic interactions”. SCIENCE 357 (6357): 1274-1277.
Siek, F., Neb, S., Bartz, P., Hensen, M., Strüber, C., Fiechter, S., Torrent-Sucarrat, M., Silkin, V. M., Krasovskii, E. E., Kabachnik, N. M., et al. (2017). Angular momentum-induced delays in solid-state photoemission enhanced by intra-atomic interactions. SCIENCE 357, 1274-1277.
Siek, F., et al., 2017. Angular momentum-induced delays in solid-state photoemission enhanced by intra-atomic interactions. SCIENCE, 357(6357), p 1274-1277.
F. Siek, et al., “Angular momentum-induced delays in solid-state photoemission enhanced by intra-atomic interactions”, SCIENCE, vol. 357, 2017, pp. 1274-1277.
Siek, F., Neb, S., Bartz, P., Hensen, M., Strüber, C., Fiechter, S., Torrent-Sucarrat, M., Silkin, V.M., Krasovskii, E.E., Kabachnik, N.M., Fritzsche, S., Diez Muino, R., Echenique, P.M., Kazansky, A.K., Müller, N., Pfeiffer, W., Heinzmann, U.: Angular momentum-induced delays in solid-state photoemission enhanced by intra-atomic interactions. SCIENCE. 357, 1274-1277 (2017).
Siek, Fabian, Neb, Sergej, Bartz, Peter, Hensen, Matthias, Strüber, Christian, Fiechter, Sebastian, Torrent-Sucarrat, Miquel, Silkin, Vyacheslav M., Krasovskii, Eugene E., Kabachnik, Nikolay M., Fritzsche, Stephan, Diez Muino, Ricardo, Echenique, Pedro M., Kazansky, Andrey K., Müller, Norbert, Pfeiffer, Walter, and Heinzmann, Ulrich. “Angular momentum-induced delays in solid-state photoemission enhanced by intra-atomic interactions”. SCIENCE 357.6357 (2017): 1274-1277.

6 Zitationen in Europe PMC

Daten bereitgestellt von Europe PubMed Central.

Ultrafast quantum control of ionization dynamics in krypton.
Hütten K, Mittermair M, Stock SO, Beerwerth R, Shirvanyan V, Riemensberger J, Duensing A, Heider R, Wagner MS, Guggenmos A, Fritzsche S, Kabachnik NM, Kienberger R, Bernhardt B., Nat Commun 9(1), 2018
PMID: 29459621
Imaging Plasmonic Fields with Atomic Spatiotemporal Resolution.
Li J, Saydanzad E, Thumm U., Phys Rev Lett 120(22), 2018
PMID: 29906172
Absolute timing of the photoelectric effect.
Ossiander M, Riemensberger J, Neppl S, Mittermair M, Schäffer M, Duensing A, Wagner MS, Heider R, Wurzer M, Gerl M, Schnitzenbaumer M, Barth JV, Libisch F, Lemell C, Burgdörfer J, Feulner P, Kienberger R., Nature 561(7723), 2018
PMID: 30232421
Subcycle observation of lightwave-driven Dirac currents in a topological surface band.
Reimann J, Schlauderer S, Schmid CP, Langer F, Baierl S, Kokh KA, Tereshchenko OE, Kimura A, Lange C, Güdde J, Höfer U, Huber R., Nature 562(7727), 2018
PMID: 30258232
Angular momentum can slow down photoemission.
Yakovlev VS, Karpowicz N., Science 357(6357), 2017
PMID: 28935793

72 References

Daten bereitgestellt von Europe PubMed Central.

Delay in photoemission.
Schultze M, Fiess M, Karpowicz N, Gagnon J, Korbman M, Hofstetter M, Neppl S, Cavalieri AL, Komninos Y, Mercouris T, Nicolaides CA, Pazourek R, Nagele S, Feist J, Burgdorfer J, Azzeer AM, Ernstorfer R, Kienberger R, Kleineberg U, Goulielmakis E, Krausz F, Yakovlev VS., Science 328(5986), 2010
PMID: 20576884
Probing single-photon ionization on the attosecond time scale.
Klunder K, Dahlstrom JM, Gisselbrecht M, Fordell T, Swoboda M, Guenot D, Johnsson P, Caillat J, Mauritsson J, Maquet A, Taieb R, L'Huillier A., Phys. Rev. Lett. 106(14), 2011
PMID: 21561188

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0
Attosecond spectroscopy in condensed matter.
Cavalieri AL, Muller N, Uphues T, Yakovlev VS, Baltuska A, Horvath B, Schmidt B, Blumel L, Holzwarth R, Hendel S, Drescher M, Kleineberg U, Echenique PM, Kienberger R, Krausz F, Heinzmann U., Nature 449(7165), 2007
PMID: 17960239

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0
Attosecond Delays in Molecular Photoionization.
Huppert M, Jordan I, Baykusheva D, von Conta A, Worner HJ., Phys. Rev. Lett. 117(9), 2016
PMID: 27610849

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0
Attosecond time-resolved photoemission from core and valence states of magnesium.
Neppl S, Ernstorfer R, Bothschafter EM, Cavalieri AL, Menzel D, Barth JV, Krausz F, Kienberger R, Feulner P., Phys. Rev. Lett. 109(8), 2012
PMID: 23002773
Direct observation of electron propagation and dielectric screening on the atomic length scale.
Neppl S, Ernstorfer R, Cavalieri AL, Lemell C, Wachter G, Magerl E, Bothschafter EM, Jobst M, Hofstetter M, Kleineberg U, Barth JV, Menzel D, Burgdorfer J, Feulner P, Krausz F, Kienberger R., Nature 517(7534), 2015
PMID: 25592539

AUTHOR UNKNOWN, 0
Direct time-domain observation of attosecond final-state lifetimes in photoemission from solids.
Tao Z, Chen C, Szilvasi T, Keller M, Mavrikakis M, Kapteyn H, Murnane M., Science 353(6294), 2016
PMID: 27256880

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0
Theory and simulation of resonant inelastic X-ray scattering in s-p bonded systems: Graphite, hexagonal boron nitride, diamond, and cubic boron nitride
Shirley, J. Electron Spectros. Relat. Phenomena 110–111(), 2000

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0
Ratip – A toolbox for studying the properties of open-shell atoms and ions
Fritzsche, J. Electron Spectros. Relat. Phenomena 114–116(), 2001

AUTHOR UNKNOWN, 0
Propensity rules: An analytical approach.
Fano U., Phys Rev A Gen Phys 32(1), 1985
PMID: 9896088

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0
Numerical simulations of multiphoton ionization and above-threshold electron spectra.
Javanainen J, Eberly JH, Su Q., Phys Rev A Gen Phys 38(7), 1988
PMID: 9900778

AUTHOR UNKNOWN, 0
Electronic structure of MoSe2, MoS2, and WSe2. II. The nature of the optical band gaps.
Coehoorn R, Haas C, de Groot RA ., Phys. Rev., B Condens. Matter 35(12), 1987
PMID: 9940851
Efficient pseudopotentials for plane-wave calculations.
Troullier N, Martins JL., Phys. Rev., B Condens. Matter 43(3), 1991
PMID: 9997467

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0
Determination of the hole lifetime from photoemission: Ti 3d states in TiTe2.
Krasovskii EE, Rossnagel K, Fedorov A, Schattke W, Kipp L., Phys. Rev. Lett. 98(21), 2007
PMID: 17677809

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0
Revision of the Douglas-Kroll transformation.
Jansen G, Hess BA., Phys Rev A Gen Phys 39(11), 1989
PMID: 9901188
On the quality of the hardness kernel and the Fukui function to evaluate the global hardness.
Torrent-Sucarrat M, Salvador P, Geerlings P, Sola M., J Comput Chem 28(2), 2007
PMID: 17186480
The hardness kernel as the basis for global and local reactivity indices.
Torrent-Sucarrat M, Salvador P, Sola M, Geerlings P., J Comput Chem 29(7), 2008
PMID: 18044700

AUTHOR UNKNOWN, 0
Export

Markieren/ Markierung löschen
Markierte Publikationen

Open Data PUB

Web of Science

Dieser Datensatz im Web of Science®
Quellen

PMID: 28935802
PubMed | Europe PMC

Suchen in

Google Scholar