声子晶体是近年来提出的一种新型功能材料,目前主要处于理论研究阶段.通过与光子晶体类比,可推断由振动材料组成的周期性结构,传输弹性波时也有带隙存在,这种特征可以有效地进行声波控制和振动控制,阐述了声子晶体的概念、基本特征、研究方法和进展.
参考文献
[1] | Yablonlvitch E .Inhabited spontaneous in solid-state physics and electronics[J].Physical Review Letters,1987,58(20):2059. |
[2] | Frei W R;Johnson H T .Finite-element analysis of disorder effects in photonic crystals[J].Physical Review B,2004,63(70):165116. |
[3] | Wu Fugen;Liu Zhengyou;Liu Youyan .Splitting and tuning characteristics of the point defect modes in two-dimensional phononic crystals[J].Physical Review E,2004,69:066609. |
[4] | Suxia Yang;J. H. Page;Zhengyou Liu;M. L. Cowan;C.T. Chan;Ping Sheng .Focusing of Sound in a 3D Phononic Crystal[J].Physical review letters,2004(2):24301.1-24301.4. |
[5] | 温激鸿,王刚,刘耀宗,郁殿龙.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(10):3384-3388. |
[6] | Kushwaha M S;Halevi P;Dobrzgnski L et al.Acoustic band structure of periodic elastic composites[J].Physical Review Letters,1993,71(13):2022. |
[7] | Kushwaha M S;Halevi P .Ultrawideband filter for noise control[J].Japanese Journal of Applied Physics,1997,36:1043. |
[8] | Sigalas MM. .Defect states of acoustic waves in a two-dimensional lattice of solid cylinders[J].Journal of Applied Physics,1998(6):3026-3030. |
[9] | Wu Fugen;Hou Zhilin;Liu Zhengyou et al.Point defect states in two-dimensional phononic crystals[J].Physical Review A,2001,292:198. |
[10] | Liu Zhengyou;Zhang Xixiang;Mao Yiwei et al.Locally Resonant Sonic Materials[J].Science,2000,289:1734. |
[11] | Yang Suxia et al.Ultrasound tunneling through 3D phononic crystals[J].Physical Review Letters,2002,88(10):104301. |
[12] | Kushwaha M S;Halevi P et al.Theory of acoustic band stracture of periodic elastic composites[J].Physical Review B,1994,49(04):2313. |
[13] | Tanaka Y;Tamura S .Two-dimensional phononic crystals:surface acoustic waves[J].Physical Review B,1999,77:263. |
[14] | Tanaka Y.;Tamura S. .Acoustic stop bands of surface and bulk modes in two-dimensional phononic lattices consisting of aluminum and a polymer[J].Physical Review.B.Condensed Matter,1999(19):13294-13297. |
[15] | Vasseur J O et al.Complete acoustic band gaps in periodic fibre reinforced composite materials:the carbon/epoxy composite and some metallic systems[J].Journal of Physics:Condensed Matter,1994,6:8759. |
[16] | Coffaux C;Vigneron J P .Theoretical study of a tunable phononic band gap system[J].Physical Review B,2001,64(07):075118. |
[17] | Sigalas M S .Elastic wave band gaps and defect in two-dimensional composites[J].Journal of the Acoustical Society of America,1997,101(03):1256. |
[18] | Garcia-Pablos D.;de Espinosa FRM.;Torres M.;Kafesaki M. Garcia N.;Sigalas M. .Theory and experiments on elastic band gaps[J].Physical review letters,2000(19):4349-4352. |
[19] | 王刚,温激鸿,韩小云,赵宏刚.二维声子晶体带隙计算中的时域有限差分方法[J].物理学报,2003(08):1943-1947. |
[20] | Sigalas M M;Soukoulis C M .Elastic-wave propagation through disorder and/or absorptive systems[J].Physical Review B,1995,51:2780. |
[21] | Kafesaki M.;Economou EN. .Multiple-scattering theory for three-dimensional periodic acoustic composites[J].Physical Review.B.Condensed Matter,1999(17):11993-12001. |
[22] | Wang Gang;Wen Jihong;Lin Yanzong et al.Lumpedmass method for the study of band structure in two-dimensional phononic crystals[J].Physical Review B,2004,69:184302. |
[23] | Coffaux C;Sanchez-Dehesa J .Two-dimensional phononic crystals studied using a variational method:Application to lattices of locally resonant materials[J].Physical Review B,2003,67:144301. |
[24] | Martinez R;Sancho J;Sanchez J V et al.Sound attenuation by sculpture[J].Nature,1995,378:241. |
[25] | Cleland AN.;Yung CS.;Schmidt DR. .Thermal conductance of nanostructured phononic crystals - art. no. 172301[J].Physical Review.B.Condensed Matter,2001(17):2301-0. |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%