ULTRASHORT ELASTIC AND PLASTIC SHOCK WAVES IN ALUMINUM

被引:8
作者
Inogamov, Nail A. [1 ]
Khokhlov, Viktor A. [1 ]
Petrov, Yurii V. [1 ]
Anisimov, Sergey I. [1 ]
Zhakhovsky, Vasily V. [2 ]
Demaske, Brian J. [2 ]
Oleynik, Ivan I. [2 ]
White, Carter T. [3 ]
Ashitkov, Sergey I. [4 ]
Khishchenko, Konstantin V. [4 ]
Agranat, Mikhail B. [4 ]
Fortov, Vladimir E. [4 ]
机构
[1] RAS, Landau Theoret Phys Inst, Chernogolovka 142432, Russia
[2] Univ S Florida, Dept Phys, Tampa, FL 33620 USA
[3] Naval Res Lab, Washington, DC 20375 USA
[4] RAS, Joint Inst High Temp, Moscow, Russia
来源
SHOCK COMPRESSION OF CONDENSED MATTER - 2011, PTS 1 AND 2 | 2012年 / 1426卷
关键词
Elastic-plastic shock splitting; femtosecond laser shock generation; LASER; METAL;
D O I
10.1063/1.3686425
中图分类号
O59 [应用物理学];
学科分类号
摘要
Ultrashort shock waves in aluminum films generated by femtosecond laser pulses were studied using two-temperature hydrodynamics and molecular dynamics methods. We observed double wave breaking characterized by an independent formation of leading elastic and trailing plastic shock waves. Both the amplitude and speed of the plastic shock decrease quickly in time due to hydrodynamic attenuation, while the elastic shock front slowly decays during propagation. When the pressure in the plastic front becomes equal to the normal component of pressure tensor in the elastic zone, the plastic wave disappears. Therefore, the distance between elastic and plastic fronts first decreases, then increases, with time. The elastic shock uniaxially compresses the crystal to pressures higher than the Hugoniot elastic limit (HEL). For a short time, the crystal within the elastic zone remains in a metastable state, that lies on an extension of the elastic branch of the Hugoniot beyond the HEL. Our theoretical results explain the seemingly puzzling experimental findings, where high-pressure elastic shock waves were observed with normal pressures up to 10-20 GPa.
引用
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页数:4
相关论文
共 21 条
[1]   Ultrafast observation of shocked states in a precompressed material [J].
Armstrong, Michael R. ;
Crowhurst, Jonathan C. ;
Bastea, Sorin ;
Zaug, Joseph M. .
JOURNAL OF APPLIED PHYSICS, 2010, 108 (02)
[2]  
Ashitkov S., 2011, AIP SCCM C P
[3]   Behavior of Aluminum near an Ultimate Theoretical Strength in Experiments with Femtosecond Laser Pulses [J].
Ashitkov, S. I. ;
Agranat, M. B. ;
Kanel', G. I. ;
Komarov, P. S. ;
Fortov, V. E. .
JETP LETTERS, 2010, 92 (08) :516-520
[4]   Shock deformation of face-centred-cubic metals on subnanosecond timescales [J].
Bringa, M. ;
Rosolankova, K. ;
Rudd, R. E. ;
Remington, B. A. ;
Wark, J. S. ;
Duchaineau, M. ;
Kalantar, H. ;
Hawreliak, J. ;
Belak, J. .
NATURE MATERIALS, 2006, 5 (10) :805-809
[5]  
Crowhurst J., 2011, AIP SCCM C P
[6]  
Demaske B. J., 2011, AIP SCCM C P, VF1.151
[7]   Time- and space-resolved optical probing of femtosecond-laser-driven shock waves in aluminum [J].
Evans, R ;
Badger, AD ;
Fallies, F ;
Mahdieh, M ;
Hall, TA ;
Audebert, P ;
Geindre, JP ;
Gauthier, JC ;
Mysyrowicz, A ;
Grillon, G ;
Antonetti, A .
PHYSICAL REVIEW LETTERS, 1996, 77 (16) :3359-3362
[8]   Measurement of shock wave rise times in metal thin films [J].
Gahagan, KT ;
Moore, DS ;
Funk, DJ ;
Rabie, RL ;
Buelow, SJ ;
Nicholson, JW .
PHYSICAL REVIEW LETTERS, 2000, 85 (15) :3205-3208
[9]   Measurement of transit time for femtosecond-laser-driven shock wave through aluminium films by ultrafast microscopy [J].
Huang, Li ;
Yang, Yanqiang ;
Wang, Yinghui ;
Zheng, Zhiren ;
Su, Wenhui .
JOURNAL OF PHYSICS D-APPLIED PHYSICS, 2009, 42 (04)
[10]   Laser Acoustic Probing of Two-Temperature Zone Created by Femtosecond Pulse [J].
Inogamov, N. A. ;
Zhakhovsky, V. V. ;
Ashitkov, S. I. ;
Khokhlov, V. A. ;
Shepelev, V. V. ;
Komarov, P. S. ;
Ovchinnikov, A. V. ;
Sitnikov, D. S. ;
Petrov, Yu. V. ;
Agranat, M. B. ;
Anisimov, S. I. ;
Fortov, V. E. .
CONTRIBUTIONS TO PLASMA PHYSICS, 2011, 51 (04) :367-374