[1] Li Rongfu, Cui Guihua, Tian Zuoxi, et al. Laser-Acoustic Remote Sensing Technique[M]. Beijing:National Defence Industry Press, 2003:12-15. (in Chinese)李荣福, 崔桂华, 田作喜, 等. 激光声遥感技术[M]. 北京:国防工业出版社, 2003:12-15.
[2] Wang Xiaoyu, Wang Jiang'an, Zong Siguang, et al. A new method for improving characteristic of laser-induced acoustic signals[J]. Infrared and Laser Engineering, 2014, 43(5):1449-1453. (in Chinese)王晓宇, 王江安, 宗思光, 等. 一种新的改善激光声信号特性的方法[J]. 红外与激光工程, 2014, 43(5):1449-1453.
[3] Ye Xi, Yao Xiongliang, Zhang A'man, et al. The motion and acoustic radiation characteristics for cavitation in the compressible vortex fluid[J]. Acta Phys Sin, 2013, 62(11):114702. (in Chinese)叶曦, 姚熊亮, 张阿漫, 等. 可压缩涡流场中空泡运动规律及声辐射特性研究[J]. 物理学报, 2013, 62(11):114702.
[4] Wu Xiaoye, Zhang Lichao, Shi Guang. Optical-thermal and optical-acoustics detecting techniques applied for the characterizations of high performance optical thin films[J]. Chinese Optics, 2014, 7(5):0701-0711. (in Chinese)武潇野, 张立超, 时光. 应用于高性能光学薄膜表征的光热光声检测技术[J]. 中国光学, 2014, 7(5):0701-0711.
[5] Miao Shaofeng, Yang Hong, Huang Yuanhui, et al. Research progresses of photoacoustic imaging[J]. Chinese Optics, 2015, 8(5):699-713. (in Chinese)苗少峰, 杨虹, 黄远辉, 等. 光声成像研究进展[J]. 中国光学, 2015, 8(5):699-713.
[6] Yang Chenlong, Chen Yuechao, Ye Qian, et al. Ultrasonic echo signal modeling and identification for minor defects in metallic materials[J]. Optics and Precision Engineering, 2015, 23(9):2635-2644. (in Chinese)杨辰龙, 陈越超, 叶钱, 等. 金属材料小缺陷超声反射信号建模及识别[J]. 光学精密工程, 2015, 23(9):2635-2644.
[7] Antonelli L, Blackmon F. Experiment demonstration of multiple pulse non-linear opto-acoustic signal generation and control[J]. Applied Optics, 2005, 44(1):103-112.
[8] Brujan E A, Vogel A. Stress wave emission and cavitation bubble dynamics by nanosecond optical breakdown in a tissue phantom[J]. Journal of Fluid Mechanics, 2006, 55(8):281-308.
[9] Kyuichi Yasui, Toru Tuziuti, Judy Lee, et al. Numerical simulations of acoustic cavitation noise with the temporal fluctuation in the number of bubbles[J]. Ultrasonics Sonochemistry, 2010, 17(2):460-472.
[10] Peng Shui, Zhang Mingmin, Wang Jiang'an. Improved method for computing underwater acoustic wave induced by laser breakdown[J]. Chinese Journal of Lasers, 2012, 39(4):1332-1337. (in Chinese)彭水, 张明敏, 王江安. 一种改进的水下光击穿声辐射计算方法[J]. 中国激光, 2012, 39(4):1332-1337.
[11] Li Shengyong, Wang Xiaoyu, Wang Jiang'an, et al. Experimental investigation of influence of ambient pressure on properties of laser-induced cavitation bubble collapse sound waves[J]. Infrared and Laser Engineering, 2015, 44(3):879-883. (in Chinese)李胜勇, 王晓宇, 王江安, 等. 环境压强对激光空泡声波特性影响的实验研究[J]. 红外与激光工程, 2015, 44(3):879-883.
[12] Li Shengyong, Wu Jun, Jiang Tao, et al. Properties investigated of laser-induced cavitation bubble collapse sound waves based on wavelet analysis[J]. Laser Infrared, 2010, 40(10):1053-1058. (in Chinese)李胜勇, 吴俊, 姜涛, 等. 基于小波分析的空泡声波特性研究[J]. 激光与红外, 2010, 40(10):1053-1058.
[13] Du Gonghuan, Zhu Zhemin. Fundamentals of Acoustics[M]. Nanjing:Nanjing Univesity Press, 2012:102-105. (in Chinese)杜功焕, 朱哲民. 声学基础[M].南京:南京大学出版社, 2012:102-105.
[14] Lu Zhigang, Zhan Renjun, Wang Xiaoyu. Characteristics of laser-induced plasma acoustic signal[J]. Infrared and Laser Engineering, 2014, 43(9):2844-2849. (in Chinese)卢志刚, 战仁军, 王晓宇. 激光等离子体声信号特性[J]. 红外与激光工程, 2014, 43(9):2844-2849.
[15] Liu Mengran, Jian Zeming, Zhang Guojun, et al. Fluid-structure interaction of MEMS vector hydrophone in packing processing[J]. Optics and Precision Engineering, 2015, 23(5):1387-1393. (in Chinese)刘梦然, 简泽明, 张国军, 等. MEMS矢量水听器封装的流体-结构相互作用[J]. 光学精密工程, 2015, 23(5):1387-1393.