[1] JI Wenqian,WEI Qi,ZHU Xingfeng,et al.3D Acoustic Metasurface Carpet Cloak Based on Groove Structure Units[J].Journal of Physics,D. Applied Physics:A Europhysics Journal,2019,52(32):325302.DOI:10.1088/1361-6463/ab216a.
[2] ZHOU Hongtao,FAN Shiwang,LI Xiaoshuang,et al.Tunable Arc-Shaped Acoustic Metasurface Carpet Cloak[J].Smart Materials and Structures,2020,29(6):065016.DOI:10.1088/1361-665X/ab87e4.
[3] ZHOU Hongtao,FU Wenxiao,WANG Yanfeng,et al.Ultra-Broadband Passive Acoustic Metasurface for Wide-Angle Carpet Cloaking[J].Materials Design,2021,199:109414.DOI:10.1016/j.matdes.2020.109414.
[4] ZHANG Yunfeng,TONG Yuanwei.An Ultrathin Metasurface Carpet Cloak Based on the Generalized Sheet Transition Conditions[J].Optics Communications,2021,483:126590.DOI:10.1016/j.matdes.2020.109414.
[5] WANG Yihe,CHENG Ying,LIU Xiaojun.Ultrathin Acoustic Cloaking by Aconformal Hybrid Metasurface[J].Scientific Reports,2019,9(1):12700.DOI:10.1038/s41598-019-49148-3.
[6] 王一鹤.基于声学人工材料的声波异常调控研究[D].南京:南京大学,2021.
[7] 陆智淼,蔡力,温激鸿,等.基于五模材料的圆柱声隐身斗篷坐标变换设计[J].物理学报,2016,65(17):289-296.
[8] 潘宇雄,徐峰祥,牛小强.双锥型五模材料低频声波调控及参数设计[J].应用声学,2022,41(5):765-775.
[9] CUMMER STEVEN A,POPA BOGDAN-IOAN,SCHURIG DAVID,et al.Scattering Theory Derivation of a 3D Acoustic Cloaking Shell[J].Physical Review Letters,2008,100(2):024301.DOI:10.1103/PhysRevLett.100.024301.
[10] ZHANG Shu,XIA Chunguang,FANG NICHOLAS.Broadband Acoustic Cloak for Ultrasound Waves[J].Physical Review Letters,2011,106(2):024301.DOI:10.1103/PhysRevLett.106.024301.
[11] LIAO Guangxin,LUAN Congcong,WANG Zhenwei,et al.Acoustic Metamaterials:A Review of Theories,Structures,Fabrication Approaches,and Applications[J].Advanced Materials Technologies,2021,6(5):2000787.DOI:10.1002/admt.202000787.
[12] 李勇.声学超构表面[J].物理,2017,46(11):721-730.
[13] LI Xiaoshuang,WANG Yanfeng,CHEN A'li,et al.An Arbitrarily Curved Acoustic Metasurface for Three-Dimensional Reflected Wave-Front Modulation[J].Journal of Physics,D. Applied Physics:A Europhysics Journal,2020,53(19):1-27.
[14] 陈阿丽,汪越胜,王艳锋,等.声学/弹性相位梯度超表面设计:原理、功能基元、可调和编码[J].力学进展,2022,52(4):948-1011.
[15] 姬文倩.基于超材料的声波调控与应用研究[D].南京:南京师范大学,2021.
[16] 田野.透射型超表面对声波的调控及应用研究[D].南京:南京大学,2018.
[17] 许玥,蓝君,李义丰.卷曲空间型超表面对声波的调控[J].声学技术,2018,37(6):515-520.
|