Spatiotemporal analysis of a final-state shape resonance in interferometric photoemission from Cu(111) surfaces

被引:12
作者
Ambrosio, M. J. [1 ]
Thumm, U. [1 ]
机构
[1] Kansas State Univ, Dept Phys, Cardwell Hall, Manhattan, KS 66506 USA
基金
美国国家科学基金会;
关键词
IMAGE POTENTIAL STATES; HARMONIC-GENERATION; METAL-SURFACES; ATTOSECOND; ENERGY; CHARGE; DELAYS; MASS;
D O I
10.1103/PhysRevA.100.043412
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
Photoemission from solid targets includes the excitation and motion of electrons inside the substrate, followed by their propagation in vacuum and detection. It thus depends on the electronic band structure of the solid in the two distinct spectral domains of bound initial and continuum final states. While the imprint of the static (initial-state) valence electronic structure of solids on photoemission spectra is routinely examined in standard photoemission spectroscopy in the energy domain, state-of-the-art time-resolved photoelectron spectroscopy allows, in addition, the scrutiny of photoelectron propagation in the electronic continuum. Within a quantum-mechanical model for attosecond time-resolved interferometric photoelectron emission from solids, we calculated photoemission spectra as a function of the delay between the exciting primary attosecond pulse train and assisting infrared (IR) laser pulse. Accounting for final-state interactions of the photoelectron with the IR laser electric field and the periodic substrate, our numerical results for interferometric photoemission from the 3d-valence band of Cu(111) surfaces show a striking resonantly enhanced sideband yield at photoelectron kinetic energies near 24 eV, in conjunction with a pronounced increase of the photoelectron wave-function amplitude inside the solid on a length scale of a few nanometers. This resonant shift of final-state photoelectron-probability density towards the bulk can be interpreted as an increase in the photoelectron propagation time in the solid and is commensurate with the resonantly enhanced spectral sideband-phase shifts observed in recent two-pathway two-photon interference spectra by Kasmi et al. [Optica 4, 1492 (2017)].
引用
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页数:15
相关论文
共 53 条
[1]   Energy-resolved attosecond interferometric photoemission from Ag(111) and Au(111) surfaces [J].
Ambrosio, M. J. ;
Thumm, U. .
PHYSICAL REVIEW A, 2018, 97 (04)
[2]   Electronic structure effects in spatiotemporally resolved photoemission interferograms of copper surfaces [J].
Ambrosio, M. J. ;
Thumm, U. .
PHYSICAL REVIEW A, 2017, 96 (05)
[3]   Double ionization of helium by proton impact: A generalized-Sturmian approach [J].
Ambrosio, M. J. ;
Mitnik, D. M. ;
Ancarani, L. U. ;
Gasaneo, G. ;
Gaggioli, E. L. .
PHYSICAL REVIEW A, 2015, 92 (04)
[4]   Mathematical properties of generalized Sturmian functions [J].
Ambrosio, M. J. ;
Del Punta, J. A. ;
Rodriguez, K. V. ;
Gasaneo, G. ;
Ancarani, L. U. .
JOURNAL OF PHYSICS A-MATHEMATICAL AND THEORETICAL, 2012, 45 (01)
[5]   Comparative time-resolved photoemission from the Cu(100) and Cu(111) surfaces [J].
Ambrosio, Marcelo J. ;
Thumm, Uwe .
PHYSICAL REVIEW A, 2016, 94 (06)
[6]  
[Anonymous], OXFORD HDB INNOVATIO
[7]  
[Anonymous], PHYS REV B
[8]   Resonant and nonresonant processes in attosecond streaking from metals [J].
Borisov, A. G. ;
Sanchez-Portal, D. ;
Kazansky, A. K. ;
Echenique, P. M. .
PHYSICAL REVIEW B, 2013, 87 (12)
[9]   Attosecond spectroscopy in condensed matter [J].
Cavalieri, A. L. ;
Mueller, N. ;
Uphues, Th. ;
Yakovlev, V. S. ;
Baltuska, A. ;
Horvath, B. ;
Schmidt, B. ;
Bluemel, L. ;
Holzwarth, R. ;
Hendel, S. ;
Drescher, M. ;
Kleineberg, U. ;
Echenique, P. M. ;
Kienberger, R. ;
Krausz, F. ;
Heinzmann, U. .
NATURE, 2007, 449 (7165) :1029-1032
[10]   Resonant neutralization of H- near Cu surfaces:: Effects of the surface symmetry and ion trajectory -: art. no. 052903 [J].
Chakraborty, H ;
Niederhausen, T ;
Thumm, U .
PHYSICAL REVIEW A, 2004, 70 (05) :052903-1