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Melting, bubble-like expansion and explosion of superheated plasmonic nanoparticles

Authors :
Dold, Simon
Reichenbach, Thomas
Colombo, Alessandro
Jordan, Jakob
Barke, Ingo
Behrens, Patrick
Bernhardt, Nils
Correa, Jonathan
Düsterer, Stefan
Erk, Benjamin
Fennel, Thomas
Hecht, Linos
Heilrath, Andrea
Irsig, Robert
Iwe, Norman
Kolb, Patrice
Kruse, Björn
Langbehn, Bruno
Manschwetus, Bastian
Marienhagen, Philipp
Martinez, Franklin
Broer, Karl-Heinz Meiwes
Oldenburg, Kevin
Passow, Christopher
Peltz, Christian
Sauppe, Mario
Seel, Fabian
Tanyag, Rico Mayro P.
Treusch, Rolf
Ulmer, Anatoli
Walz, Saida
Moseler, Michael
Möller, Thomas
Rupp, Daniela
von Issendorff, Bernd
Publication Year :
2023

Abstract

We report on time-resolved coherent diffraction imaging of gas-phase silver nanoparticles, strongly heated via their plasmon resonance. The x-ray diffraction images reveal a broad range of phenomena for different excitation strengths, from simple melting over strong cavitation to explosive disintegration. Molecular dynamics simulations fully reproduce this behavior and show that the heating induces rather similar trajectories through the phase diagram in all cases, with the very different outcomes being due only to whether and where the stability limit of the metastable superheated liquid is crossed.<br />Comment: 17 pages, 8 figures (including supplemental material)

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2309.00433
Document Type :
Working Paper