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Fast and slow dynamics in femtosecond laser-induced crack propagation inside a LiF single crystal

Fast and slow dynamics in femtosecond laser-induced crack propagation inside a LiF single crystal
Fast and slow dynamics in femtosecond laser-induced crack propagation inside a LiF single crystal
Extension of a crack at a specific location has been observed inside a LiF single crystal after parallel photoexcitation at multiple spots by focused femtosecond (fs) laser pulses. In this study, to elucidate the mechanism of crack extension at a specific location, we observed the dynamics of crack propagation in a LiF single crystal after parallel fs laser irradiation by a pump-probe microscope. The ob-servation showed that there are fast and slow propagation dynamics; the velocity of the faster prop-agation is comparable to the sound velocity, whereas that of the slow propagation was more than ten times slower than the sound velocity. The slower propagation was observed only in extended cracks. In addition, we observed the transient birefringence distribution during slower propagation (10-24 ns) and found that the birefringence was distributed around normal cracks while there was little strain distribution around extended cracks. Therefore, we interpreted that residual strain, which is the origin of the observed birefringence, in tens nanoseconds could suppress the extension of normal cracks and the slower propagation appeared as a result of the disappearance of the residual strain.
Femtosecond laser, dynamics, crystal, crack, dislocation, birefringence, strain
1880-0688
320-324
Sakakura, Masaaki
3bb15bbd-d590-4cba-ab5a-862dc7acd054
Okada, Takuro
a2f1aca9-4846-4ab8-ad90-a976fde94e53
Shimotsuma, Yasuhiko
0664279b-def2-41d4-a5ec-207ce02013a7
Fukuda, Naoaki
de44deed-c825-49ce-b6d5-5508dedb1abf
Miura, Kiyotaka
5dbc9159-ace0-4dd9-b18d-36f87ae78c47
Sakakura, Masaaki
3bb15bbd-d590-4cba-ab5a-862dc7acd054
Okada, Takuro
a2f1aca9-4846-4ab8-ad90-a976fde94e53
Shimotsuma, Yasuhiko
0664279b-def2-41d4-a5ec-207ce02013a7
Fukuda, Naoaki
de44deed-c825-49ce-b6d5-5508dedb1abf
Miura, Kiyotaka
5dbc9159-ace0-4dd9-b18d-36f87ae78c47

Sakakura, Masaaki, Okada, Takuro, Shimotsuma, Yasuhiko, Fukuda, Naoaki and Miura, Kiyotaka (2015) Fast and slow dynamics in femtosecond laser-induced crack propagation inside a LiF single crystal. Journal of Laser Micro/Nanoengineering, 10 (3), 320-324. (doi:10.2961/jlmn.2015.03.0015).

Record type: Article

Abstract

Extension of a crack at a specific location has been observed inside a LiF single crystal after parallel photoexcitation at multiple spots by focused femtosecond (fs) laser pulses. In this study, to elucidate the mechanism of crack extension at a specific location, we observed the dynamics of crack propagation in a LiF single crystal after parallel fs laser irradiation by a pump-probe microscope. The ob-servation showed that there are fast and slow propagation dynamics; the velocity of the faster prop-agation is comparable to the sound velocity, whereas that of the slow propagation was more than ten times slower than the sound velocity. The slower propagation was observed only in extended cracks. In addition, we observed the transient birefringence distribution during slower propagation (10-24 ns) and found that the birefringence was distributed around normal cracks while there was little strain distribution around extended cracks. Therefore, we interpreted that residual strain, which is the origin of the observed birefringence, in tens nanoseconds could suppress the extension of normal cracks and the slower propagation appeared as a result of the disappearance of the residual strain.

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More information

Accepted/In Press date: 7 December 2015
Published date: December 2015
Additional Information: No Southampton authors at time of publication
Keywords: Femtosecond laser, dynamics, crystal, crack, dislocation, birefringence, strain

Identifiers

Local EPrints ID: 431172
URI: http://eprints.soton.ac.uk/id/eprint/431172
ISSN: 1880-0688
PURE UUID: 7e676af9-4e63-4824-b797-b0541c553285

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Date deposited: 24 May 2019 16:30
Last modified: 16 Mar 2024 01:56

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Contributors

Author: Masaaki Sakakura
Author: Takuro Okada
Author: Yasuhiko Shimotsuma
Author: Naoaki Fukuda
Author: Kiyotaka Miura

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