| Literature DB >> 15576618 |
M Bargheer1, N Zhavoronkov, Y Gritsai, J C Woo, D S Kim, M Woerner, T Elsaesser.
Abstract
Reversible structural changes of a nanostructure were measured nondestructively with subpicometer spatial and subpicosecond temporal resolution via x-ray diffraction (XRD). The spatially periodic femtosecond excitation of a gallium arsenide/aluminum gallium arsenide superlattice results in coherent lattice motions with a 3.5-picosecond period, which was directly monitored by femtosecond x-ray pulses at a 1-kilohertz repetition rate. Small changes (DeltaR/R = 0.01) of weak Bragg reflexes (R = 0.005) were detected. The phase and amplitude of the oscillatory XRD signal around a new equilibrium demonstrate that displacive excitation of the zone-folded acoustic phonons is the dominant mechanism for strong excitation.Entities:
Year: 2004 PMID: 15576618 DOI: 10.1126/science.1104739
Source DB: PubMed Journal: Science ISSN: 0036-8075 Impact factor: 47.728