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Laser damage of free-standing nanometer membranes

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2017

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Morimoto, Yuya
Roland, Iännis
Rennesson, Stéphanie
Semond, Fabrice
Boucaud, Philippe

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Journal of Applied Physics. 2017, 122(21), 215303. ISSN 0021-8979. eISSN 1089-7550. Available under: doi: 10.1063/1.5004081

Zusammenfassung

Many high-field/attosecond and ultrafast electron diffraction/microscopy experiments on condensed matter require samples in the form of free-standing membranes with nanometer thickness. Here, we report the measurement of the laser-induced damage threshold of 11 different free-standing nanometer-thin membranes of metallic, semiconducting, and insulating materials for 1-ps, 1030-nm laser pulses at 50 kHz repetition rate. We find a laser damage threshold that is very similar to each corresponding bulk material. The measurements also reveal a band gap dependence of the damage threshold as a consequence of different ionization rates. These results establish the suitability of free-standing nanometer membranes for high-field pump-probe experiments.

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530 Physik

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ISO 690MORIMOTO, Yuya, Iännis ROLAND, Stéphanie RENNESSON, Fabrice SEMOND, Philippe BOUCAUD, Peter BAUM, 2017. Laser damage of free-standing nanometer membranes. In: Journal of Applied Physics. 2017, 122(21), 215303. ISSN 0021-8979. eISSN 1089-7550. Available under: doi: 10.1063/1.5004081
BibTex
@article{Morimoto2017-12-07Laser-43218,
  year={2017},
  doi={10.1063/1.5004081},
  title={Laser damage of free-standing nanometer membranes},
  number={21},
  volume={122},
  issn={0021-8979},
  journal={Journal of Applied Physics},
  author={Morimoto, Yuya and Roland, Iännis and Rennesson, Stéphanie and Semond, Fabrice and Boucaud, Philippe and Baum, Peter},
  note={Article Number: 215303}
}
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