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Amorphous to crystalline phase transition in carbon induced by intense femtosecond x-ray free-electron laser pulses
Journal article   Open access   Peer reviewed

Amorphous to crystalline phase transition in carbon induced by intense femtosecond x-ray free-electron laser pulses

J. Gaudin, O. Peyrusse, J. Chalupský, M. Toufarová, L. Vyín, V. Hájková, R. Sobierajski, T. Burian, Sh. Dastjani-Farahani, A. Graf, …
Physical Review B - Condensed Matter and Materials Physics, Vol.86(2), 024103
11/07/2012

Abstract

We present the results of an experiment where amorphous carbon undergoes a phase transition induced by femtosecond 830 eV x-ray free-electron laser pulses. The phase transition threshold fluence is found to be 282 ± 11 mJ/cm2. Atomic force microscopy, photoelectron microscopy, and micro-Raman spectroscopy give experimental evidence for the phase transition in terms of a volume expansion, graphitization, and change of local order of the irradiated sample area. The interaction is modeled by an accurate time-dependent treatment of the ionization dynamics coupled to a two-temperature model. At the phase transition fluence threshold the free-electron density N e is found to be at maximum 9 × 1020 cm - 3 while the ion (atom) temperature is found to be 1050 K, e.g., above the crystallization activation temperature reported in the literature. This low ionization rate and high atom temperature suggest a thermally activated phase transition. © 2012 American Physical Society.
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https://doi.org/10.1103/PhysRevB.86.024103View
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