Transient crystalline superlattice generated by a photoacoustic transducer

Designing an efficient and simple method for modulating the intensity of x-ray radiation on a picosecond time-scale has the potential to produce ultrafast pulses of hard x-rays. In this work, we generate a tunable transient superlattice, in an otherwise perfect crystal, by photoexciting a metal film...

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Veröffentlicht in:Structural dynamics (Melville, N.Y.) N.Y.), 2014-03, Vol.1 (2), p.024301-024301
Hauptverfasser: Loether, A., Gao, Y., Chen, Z., DeCamp, M. F., Dufresne, E. M., Walko, D. A., Wen, H.
Format: Artikel
Sprache:eng
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Zusammenfassung:Designing an efficient and simple method for modulating the intensity of x-ray radiation on a picosecond time-scale has the potential to produce ultrafast pulses of hard x-rays. In this work, we generate a tunable transient superlattice, in an otherwise perfect crystal, by photoexciting a metal film on a crystalline substrate. The resulting transient strain has amplitudes approaching 1%, wavevectors greater than 0.002   Å − 1 , and lifetimes approaching 1 ns. This method has the potential to generate isolated picosecond x-ray bursts with scattering efficiencies in excess of 10%.
ISSN:2329-7778
2329-7778
DOI:10.1063/1.4867494