A Study on the Plasma Plume Expansion Dynamics of Nanosecond Laser Ablating Al/PTFE
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Jianjun Wu | Yu Zhang | Jian Li | Sheng Tan | Moge Wang | Li Jian | Zhang Yu | Wang Moge | Tan Sheng
[1] M. Stuke,et al. Ablation of polytetrafluoroethylene (Teflon) with femtosecond UV excimer laser pulses , 1989 .
[2] Narayan,et al. Pulsed-laser evaporation technique for deposition of thin films: Physics and theoretical model. , 1990, Physical review. B, Condensed matter.
[3] P. Turchi,et al. Pulsed Plasma Thruster , 1998 .
[4] S. R. Franklin,et al. Investigation of laser ablated metal and polymer plasmas in ambient gas using fast photography , 1998 .
[5] R. K. Thareja,et al. Determination of laser ablation threshold of Teflon at different harmonics of Nd:YAG laser using photothermal deflection technique , 1999 .
[6] C. Arnold,et al. Stoichiometry issues in pulsed-laser deposition of alloys grown from multicomponent targets , 1999 .
[7] A. C. Gaeris,et al. Plume splitting and sharpening in laser-produced aluminium plasma , 2002 .
[8] A. C. Gaeris,et al. Internal structure and expansion dynamics of laser ablation plumes into ambient gases , 2003 .
[9] W. Schall,et al. Ablation Performance Experiments with Metal Seeded Polymers , 2005 .
[10] M. Baig,et al. Optical emission studies of the mercury plasma generated by the fundamental, second and third harmonics of a Nd : YAG laser , 2006 .
[11] S. Amoruso,et al. Propagation dynamics of a LaMnO3 laser ablation plume in an oxygen atmosphere , 2006 .
[12] H. Tahara,et al. Performance Characteristics of Low‐Power Laser Ablative Thrusters for Small Satellites , 2006 .
[13] G. Perram,et al. Shock front dynamics in the pulsed laser deposition of YBa2Cu3O7−x , 2007 .
[14] Ding Ze-jun. Experimental study of laser propulsion by using polymer propellant doped with metal powders , 2008 .
[15] J. Sinko,et al. Delrin® for Propulsion with CO2 Laser: Carbon Doping Effects , 2008 .
[16] S. Abdelli-Messaci,et al. Fast Imaging of Laser-induced Plasma Emission from a ZnO Target ☆ , 2009 .
[17] Max M. Michaelis,et al. Review: Laser-Ablation Propulsion , 2010 .
[18] J. Lunney,et al. On the use of shockwave models in laser produced plasma expansion , 2011 .
[19] Fan Zhang,et al. Discharge Characteristics of a Laser-Electromagnetic Coupling Plasma Thruster for Spacecraft Propulsion , 2012 .
[20] Jaziel R. Vitug,et al. Stoichiometric transfer by infrared pulsed laser deposition of y-doped Bi–Sr–Ca–Cu–O investigated using time-resolved optical emission spectroscopy , 2012 .
[21] Tingfeng Wang,et al. Comparison of plasma temperature and electron density on nanosecond laser ablation of Cu and nano-Cu , 2015 .
[22] Jianjun Wu,et al. A novel laser ablation plasma thruster with electromagnetic acceleration , 2016 .
[23] Jianjun Wu,et al. Non-Fourier heat conduction and phase transition in laser ablation of polytetrafluoroethylene (PTFE) , 2017 .
[24] Chao Zhu,et al. Design and test of a laser assisted pulsed plasma thruster prototype , 2019, IOP Conference Series: Earth and Environmental Science.
[25] Maricel Agop,et al. Investigations of Laser Produced Plasmas Generated by Laser Ablation on Geomaterials. Experimental and Theoretical Aspects , 2019, Symmetry.
[26] Ningfei Wang,et al. A review of the characterization and optimization of ablative pulsed plasma thrusters , 2019, Reviews of Modern Plasma Physics.
[27] M. Fikry,et al. Investigation on the effects of laser parameters on the plasma profile of copper using picosecond laser induced plasma spectroscopy , 2020 .