Ultrafast screening and carrier dynamics in ZnO: Theory and experiment

被引:108
|
作者
Versteegh, Marijn A. M. [1 ]
Kuis, Tim [1 ]
Stoof, H. T. C. [2 ]
Dijkhuis, Jaap I. [1 ]
机构
[1] Univ Utrecht, Debye Inst Nanomat Sci, NL-3584 CC Utrecht, Netherlands
[2] Univ Utrecht, Inst Theoret Phys, NL-3584 CE Utrecht, Netherlands
关键词
TIME-RESOLVED PHOTOLUMINESCENCE; NONLINEAR OPTICS; BAND-GAP; NANOWIRE; ABSORPTION; PLASMA; PHOTODETECTORS; LUMINESCENCE; EMISSION; EXCITONS;
D O I
10.1103/PhysRevB.84.035207
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
At carrier densities above the Mott density, Coulomb screening destroys the exciton resonance. This, together with band-gap renormalization and band filling, severely affects the optical spectra. We have experimentally studied these effects by ultrafast pump-probe reflectivity measurements on a ZnO single crystal at various wavelengths around the exciton resonance and in a broad carrier-density range. Theoretically, we determined the Mott density in ZnO to be 1.5 x 10(24) m(-3) at 300 K. Taking a field-theoretical approach, we derived and solved the Bethe-Salpeter ladder equation and we computed the density-dependent reflectivity and absorption spectra. A carrier dynamics model has been developed, containing three-photon absorption, carrier cooling, and carrier trapping near the surface. The agreement between the theoretical reflectivity based on our model and the experimental data is excellent.
引用
收藏
页数:19
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