Ultra-fast dynamics of electron thermalization, cooling and transport effects in Ru(001)

被引:207
作者
Lisowski, M [1 ]
Loukakos, PA [1 ]
Bovensiepen, U [1 ]
Stähler, J [1 ]
Gahl, C [1 ]
Wolf, M [1 ]
机构
[1] Free Univ Berlin, Fachbereich Phys, D-14195 Berlin, Germany
来源
APPLIED PHYSICS A-MATERIALS SCIENCE & PROCESSING | 2004年 / 78卷 / 02期
关键词
D O I
10.1007/s00339-003-2301-7
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Time-resolved two-photon photoelectron spectroscopy is used to study the dynamics of non-equilibrium electron and hole distributions at bare and D2O-covered Ru(001) following optical excitation (55-fs, 800-nm pulses) with variable fluence (0.04-0.6 mJ cm(-2)). Within the first 0.5 ps we observe an ultra-fast transient of the excited-carrier population and energy density at the surface which is accompanied by pronounced deviations of the electron-energy distribution from a (thermalized) Fermi-Dirac distribution. Comparison of the transient energy density of the photoexcited electrons at the surface with predictions of the two-temperature model provides fair agreement up to 400 fs, but exhibits a systematically lower energy density at later times, where electrons and phonons are equilibrated. We propose that this reduced energy density at the surface originates from ultra-fast energy transport of non-thermal electrons into the bulk in competition to electron-phonon coupling at the surface. This is corroborated by extending the two-temperature model to account for non-thermal, photoexcited electrons, whereby quantitative agreement with experiment can only be achieved if ballistic transport and reduced electron-phonon coupling is incorporated for non-thermal electrons. Implications for surface femtochemistry are discussed.
引用
收藏
页码:165 / 176
页数:12
相关论文
共 42 条
[1]  
Anisimov S. I., 1974, SOV PHYS JETP, V39, P375, DOI DOI 10.1016/J.JMATPROTEC.2009.05.031
[2]  
BEHRENS H, 1981, PHYSIK DATEN
[3]   Phonon- versus electron-mediated desorption and oxidation of CO on Ru(0001) [J].
Bonn, M ;
Funk, S ;
Hess, C ;
Denzler, DN ;
Stampfl, C ;
Scheffler, M ;
Wolf, M ;
Ertl, G .
SCIENCE, 1999, 285 (5430) :1042-1045
[4]   Ultrafast electron dynamics at metal surfaces: Competition between electron-phonon coupling and hot-electron transport [J].
Bonn, M ;
Denzler, DN ;
Funk, S ;
Wolf, M ;
Wellershoff, SS ;
Hohlfeld, J .
PHYSICAL REVIEW B, 2000, 61 (02) :1101-1105
[5]   ELECTRONICALLY DRIVEN ADSORBATE EXCITATION MECHANISM IN FEMTOSECOND-PULSE LASER-DESORPTION [J].
BRANDBYGE, M ;
HEDEGARD, P ;
HEINZ, TF ;
MISEWICH, JA ;
NEWNS, DM .
PHYSICAL REVIEW B, 1995, 52 (08) :6042-6056
[6]   DYNAMICS OF NONTHERMAL REACTIONS - FEMTOSECOND SURFACE-CHEMISTRY [J].
CAVANAGH, RR ;
KING, DS ;
STEPHENSON, JC ;
HEINZ, TF .
JOURNAL OF PHYSICAL CHEMISTRY, 1993, 97 (04) :786-798
[7]  
CRACKNELL AP, 1984, LANDOLTBORNSTEIN NEW, V3, P315
[8]   Nonequilibrium electron dynamics in noble metals [J].
Del Fatti, N ;
Voisin, C ;
Achermann, M ;
Tzortzakis, S ;
Christofilos, D ;
Vallée, F .
PHYSICAL REVIEW B, 2000, 61 (24) :16956-16966
[9]   SURFACE FEMTOCHEMISTRY OF O-2 AND CO ON PT(111) [J].
DELIWALA, S ;
FINLAY, RJ ;
GOLDMAN, JR ;
HER, TH ;
MIEHER, WD ;
MAZUR, E .
CHEMICAL PHYSICS LETTERS, 1995, 242 (06) :617-622
[10]  
DENZLER DN, 2002, FEMTOCHEMISTRY FEMTO, P652