科研项目:
1、2012年国家自然科学基金项目:再入飞行体等离子体尾迹流场电磁散射特性研究(**),(2013.1-2016.12)43万,主持,结题;
2、2015年江西省自然科学基金项目:高超声速飞行器等离子体鞘套与电磁波相互作用机理及散射特性研究(20151BAB202024),(2015.1-2016.12)5万,主持,结题;
3、2015年毫米波国家重点实验室开放课题项目:辛时域有限差分算法及其在再入体等离子体鞘套电磁仿真中的应用(K201605)(2016.1-2017.12),5万,主持,在研;
4、2012年江西省自然科学基金项目:空间等离子体层中电磁波的非线性衰减效应研究(2012ZBAB202001)(2013.1-2014.12),主持,结题;
5、2012年毫米波国家重点实验室开放课题项目:基于时变冷等离子体电磁特性时域有限差分快速算法及应用研究(K201203),(2013.1-2014.12)5万,主持,结题;
6、2009年江西省自然科学基金项目:时域有限差分快速算法及在等离子体涂覆目标中的应用研究(2009GZW0016),(2010.1-2011.12)1.5万,主持,结题。
出版的论著教材:
1、刘少斌, 刘崧, 洪伟.色散介质时域有限差分方法[M] ISBN:
2、刘少斌, 章海锋, 莫锦军,孔祥鲲,刘崧.等离子体光子晶体理论[M] ISBN:
发表的主要学术论文:
1. Zhi-fang He, Song Liu (通讯作者), Sheng Chen, and Shuang-ying Zhong. Application of Symplectic Finite-Difference Time-Domain Scheme for Anisotropic Magnetized Plasma, IET Microwaves, Antennas & Propagation, 2017, 11 (5): 600-606.
2. Shuang-ying Zhong, Chong-xi Ran, and Song Liu (通讯作者).The Optimal force-gradient symplectic finite-difference time-domain scheme for electromagnetic wave propagation. IEEE Transactions on Antennas and Propagation, 2016, 64(12): 5450-5454.
3. Xi-min Wang, Song Liu (通讯作者), Xuan Li, Shuang-ying Zhong. GPU-Accelerated Finite-Difference Time-Domain Method for Dielectric Media Based on CUDA, International Journal of RF and Microwave Computer-Aided Engineering, 2016, 26: 512-518.
4. Song Liu, Zhifang He, Sheng Chen, Shuangying Zhong, Symplectic finite-difference time-domain scheme based on decomposition technique of the exponential operator for plasma media. IET Microwaves, Antennas & Propagation, 2016, 10(2): 129-133.
5. Song Liu, Sheng Chen, Zhifang He, Shuangying Zhong & Huiqin Wang. Study on the polarization properties of electromagnetic waves with arbitrary magnetic declination in magnetized plasma [J]. Waves in Random and Complex Media. 2015, 25(3): 393-404.
6. Shuang Ying Zhong, Song Liu (通讯作者). The Force-gradient Symplectic Finite-Difference Time-Domain Scheme for Maxwell’s Equations [J]. IEEE Transactions on Antennas and Propagation. 2015, 63(2): 834–838.(SCI)
7. Guo-xing Wu, Song Liu (通讯作者), Shuang Ying Zhong. Numerical analysis of propagation characteristics of electromagnetic wave in lossy left-handed material media [J]. OPTIK, 2014, 125(16): 4233–4237.(SCI)
8. Song Liu, Shuang Ying Zhong. Analysis of backscattering RCS of targets coated with parabolic distribution and time-varying plasma media [J]. OPTIK, 2013, 124(9): 6850-6852.(SCI)
9. Song Liu, Shuang Ying Zhong. Analysis on polarization characteristics of electromagnetic propagation in anisotropic magnetized plasma media [J]. OPTIK, 2013, 124(4): 389-392.(SCI)
10. Liu Song, Zhong Shuangying. FDTD Study on Scattering for Conducting Target Coated With Magnetized Plasma of Time-Varying Parabolic Density Distribution [J]. Progress In Electromagnetics Research M, 2012, 22: 13-25. (EI)
11. Song Liu, Sanqiu Liu, and Shaobin Liu. Finite-Difference Time-Domain Algorithm for Plasma Based On Trapezoidal Recursive Convolution Technique [J]. Journal of Infrared Millimeter and Terahertz Waves, 2010, 31(5): 620-628. (SCI)
12. Song Liu, Sanqiu Liu, and Shaobin Liu. Analysis for scattering of conductive Objects Covered with anisotropic magnetized plasma by Trapezoidal Recursive Convolution FDTD Method [J]. International Journal of RF and Microwave Computer-Aided Engineering, 2010, 20 (4): 465-472. (SCI)
13. Liu Song, Liu Shaobin. Simulation of Electromagnetic Wave Propagation in Plasma Using Matrix Exponential FDTD Method [J]. Journal of infrared millimeter and terahertz waves, 2009, 30(9): 1020-1026.(SCI)
14. Song Liu, Shuangying Zhong, Sanqiu Liu. A Study of Properties of the Photonic Band Gap of UnmagnetizedPlasma Photonic Crystal [J]. Plasma Science and Technology, 2009, 11(1): 14-17. (SCI)
15. Song Liu, Shuangying Zhong, Shaobin Liu. Finite-difference time-domain algorithm for dispersive media based on runge-kutta exponential time differencing method [J]. International Journal of Infrared and Millimeter Waves, 2008, 29(3): 323-328. (SCI)
16. Song Liu, Shaobin Liu. Runge-Kutta Exponential Time Differencing FDTD Method for Anisotropic Magnetized Plasma [J]. IEEE Antennas and Wireless Propagation Letters, 2008, 7: 306-309.(SCI)