[1] PENDRY J B, HOLDEN A J, STEWART W J, et al. Extremely low frequency plasmons in metallic mesostructures[J]. Physical Review Letters, 1996, 76(25): 4773-4776. [2] VESELAGO V G. The electrodynamics of substances with simultaneously negative values of ε and μ[J]. Soviet Physics Uspekhi, 1968, 10(4): 509-514. [3] CUMMER S A, CHRISTENSEN J, ALÙ A. Controlling sound with acoustic metamaterials[J]. Nature Reviews Materials, 2016, 1: 16001. [4] LIU Z, ZHANG X, MAO Y, et al. Locally resonant sonic materials[J]. Science, 2000, 289(5485): 1734-1736. [5] CHEN S B, WEN J H, WANG G, et al. Tunable band gaps in acoustic metamaterials with periodic arrays of resonant shunted piezos[J]. Chinese Physics B, 2013, 22(7): 266-270(in Chinese). [6] ABDELKRIM K, ALI A.声子晶体的基本原理与应用[M].舒海生,郑金兴,赵 磊,等译.北京:国防工业出版社,2018:10-20. ABDELKRIM K, ALI A. Basic principles and applications of phononic crystals[M]. SHU H S, ZHENG J X,ZHAO L, et al trans. National Defense Industry Press, 2018: 10-20(in Chinese). [7] KUSHWAHA M S, HALEVI P, DOBRZYNSKI L, et al. Acoustic band structure of periodic elastic composites[J]. Physical Review Letters, 1993, 71(13): 2022-2025. [8] 温熙森,温激泓,郁殿龙,等.声子晶体[M].北京:国防工业出版社,2009:8-18. WEN X S, WEN J H, YU D L, et al. Phononic crystal[M]. Beijing: National Defense Industry Press, 2009:8-18(in Chinese). [9] 温激鸿,王 刚,刘耀宗,等.基于集中质量法的一维声子晶体弹性波带隙计算[J].物理学报,2004,53(10):3384-3388. WEN J H, WANG G, LIU Y Z, et al. Lumped-mass method on calculation of elastic band gaps of one-dimensional phononic crystals[J]. Acta Physica Sinica, 2004, 53(10): 3384-3388(in Chinese). [10] XU C, HU L F. The Application of one-dimensional phononic crystals to preventing low-frequency noise[J]. Piezoelectrics and Acoustooptics. 2010, 32(05): 859-862. [11] 郁殿龙,刘耀宗,王 刚,等.一维杆状结构声子晶体扭转振动带隙研究[J].振动与冲击,2006,25(1):104-106+169. YU D L, LIU Y Z, WANG G, et al. Research on torsional vibration band gaps of one dimensional phononic crystals composed of rod structures[J]. Journal of Vibration and Shock, 2006, 25(1): 104-106+169(in Chinese). [12] 郑 玲,李以农, BAZ A.一维声子晶体的振动特性与实验研究[J].振动工程学报,2007,20(4):417-421. ZHENG L, LI Y N, BAZ A. Theoretical and experimental study on the characteristics of wave propagation for one dimensional phononic crystal[J]. Journal of Vibration Engineering, 2007, 20(4): 417-421(in Chinese). [13] YAN X. Band gap characteristics of phononic crystal made from different material[J]. Applied Mechanics and Materials, 2015, 723: 778-784. [14] GAO N S, HOU H, XIN H. A single and double slotting radial acoustic metamaterial plate[J]. Modern Physics Letters B, 2017, 31(12): 1750128. [15] GAO N S, HOU H, WU J H, et al. Low frequency band gaps below 10 Hz in radial flexible elastic metamaterial plate[J]. Journal of Physics D: Applied Physics, 2016, 49(43): 435501. [16] GAO N S, WU J H, GUAN D. Research on the large band gaps in multilayer radial phononic crystal structure[J]. Modern Physics Letters B, 2016, 30(10): 1650108. [17] XUAN C M, XU W K, YANG Z, et al. Broadband tunable elastic metastructure based on one-dimensional phononic crystal[J]. Journal of Applied Physics, 2021, 129(24): 245102. [18] HE D Z, SHI D Y. Vibration characteristics of one-dimensional phononic crystals with elastic supporting[J]. Journal of Vibration and Shock, 2022, 41(4): 185-191. [19] CAMLEY R, DJAFARI-ROUHANI B, DOBRZYNSKI L, et al. Transverse elastic waves in periodically layered infinite, semi-infinite, and slab media[J]. Journal of Vacuum Science \& Technology B, 1983, 1: 371-375. [20] DJAFARI-ROUHANI B, DOBRZYNSKI L, DUPARC O H, et al. Sagittal elastic waves in infinite and semi-infinite superlattices[J]. Physical Review B, 1983, 28(4): 1711-1720. [21] 郁殿龙.基于声子晶体理论的梁板类周期结构振动带隙特性研究[D].长沙:国防科学技术大学,2006:19-21. YU D L. Research on the vibration band gaps of periodic beams and plates based on the theory of phononic crystals[D]. Changsha: National University of Defense Technology, 2006: 19-21(in Chinese). |