主要论文 |
(近5年来已发表的主要论文): (1) Xinglong Yu , Xin Zhang∗(张欣), Li Luo , Licheng Wang , Jiebin Peng , Yingyi Huang , Yuan Guo, Jing Cai, Yanping Wang , Degang Zhao, Yuanwei Yao and Fugen Wu,Acoustic transport in higher-order topological insulators with Dirac hierarchy,New J. Phys. 25, 063008 (2023) (2)Kaiyan Zhang, Xin Zhang∗(张欣), Licheng Wang, Degang Zhao, Fugen Wu, Yuanwei Yao, Ming Xia and Yuan Guo,Observation of topological properties of non-Hermitian crystal systems with diversified coupled resonators chains, J. Appl. Phys. 130, 064502 (2021) (3 ) Licheng Wang, Ming Xia, Kaiyan Zhang, Yuanwei Yao, Fugen Wu, Xin Zhang∗(张欣), and Degang Zhao, Evolution of exceptional points and anisotropic transmission resonance phenomenon for one-dimensional local resonant phononic crystal, AIP Advances 11, 035141 (2021) ( 4) Hang Yang,Xin Zhang*(张欣), Degang Zhao, Yuechang Liu,Jianhua Guo,Yuanwei Yao,and Fugen Wu,The self-collimation effect induced by non-Hermitian acoustic systems,Applied Physics Letters, 114, 133503 (2019) ( 5) Hang Yang, Xin Zhang*(张欣),Yuechang Liu, Yuanwei Yao, Fugen Wu, and Degang Zhao,Novel acoustic flat focusing based on the asymmetric response in parity-time-symmetric phononic crystals,Scientific Reports,9:10048 (2019) (6)Xia Ming, Zhang Xin*,Wu Fugen*, Wang Licheng, Liu Yuechang, Chen Zhuohao, Yao Yuanwei, Broadband high-quality airy beams via lossy acoustic gradient-index metasurfaces Solid State Communications, 308: 113810 (2020) (7)Zeng Jun Feng, Zhang, Xin*, Wu Fu Gen*, Han Li Xiang, Wang Qiang, Mu Zhong Fei, Dong Hua Feng, Yao Yuan Wei, Phase modulation of acoustic vortex beam with metasurfaces,,Physics Letters A, 383(22): 2640-2644 (2019) (8) Hang Yang, Xin Zhang*(张欣) , Jianhua Guo,Fugen Wu, Yuanwei Yao,Influence of Coating Layer on Acoustic Wave Propagation in a Random Complex Medium with Resonant Scatterers,CHIN.PHYS.LETT,36,8:084301(2019) (9)Liu Yuechang, Zhang Xin*, Guo Jianhua, Yang Hang, Han Lixiang, Yao Yuanwei, Wu Fugen,Tailoring of diversified sound vortices using curved impedance-matched acoustic metasurfaces,Modern Physics Letters B, 34(12): 2050121(2020) (10) Zhang Wenqiang, Zhang Xin*(张欣),Wu fugen*,Yao yuanwei, Lu Shuifang, Dong Huafeng, Mu Zhongfei, Li Jingbo, Angular control of acoustic waves oblique incidence by phononic crystals based on Dirac cones at the Brillouin zone boundary, Physics Letters A, 382,423(2018) (11) Han Lixiang, Yao yuanwei*, Zhang Xin*(张欣), Wu fugen, Dong Huafeng, Mu Zhongfei, Li Jingbo,Acoustic metasurface for refracted wave manipulation. Physics Letters A , 382, 357 (2018) (12)基于二维声子晶体板共振声场的微粒操控研究,王燕萍,蔡飞燕*,李飞,张汝钧,李永川,王金萍,张欣*,郑海荣,《物理学报》,6(2023)(通讯作者) 早期关于声子晶体研究发表的部分论文 (1)Zhang X (张欣), Huang D, Wu FG, Liu ZY, Point defect states in 2D acoustic band-gap materials consisting of solid cylinders in viscous liquid, Journal of Physics D: Applied Physics 41: 155110(2008) (2)Fang NY; Wu FG, Zhang X(张欣), Acoustic band gaps in three-dimensional NaCl-type acoustic crystals, Chinese Physics Letters 25: 2922(2008) (3)Fang NY, Wu FG, Zhang X(张欣), Acoustic band gaps in three-dimensional CsCl-type periodic liquid , Solid State Communications 148: 267 (2008) (4)Xu ZL, Wu FG, Mu ZF, Zhang X(张欣), Yao YW, Larger acoustic band gaps obtained by configurations of rods in two dimensional phononic crystals, Journal Of Physics D: Applied Physics 40: 5584(2007) (5)Yang YM, Wu FG, Yang YT, Zhang X(张欣), Zhong S, Liu YY, Enlargement of the band gaps of water waves over one dimensional combination bottom structures, Physics Letters A 369: 488(2007) (6)Zhang X(张欣), Liu ZY, Liu YY, Wu FG, Acoustic quasimodes in two-dimensional dispered random media, Physical Review E 73: 066604(2006) (7)Zhang X(张欣), Liu ZY, Liu YY, The optimum elastic wave band gaps in three dimensional phononic crystals with local resonance, The European Physical Journal B 42: 477(2004) (8)Zhang X(张欣), Liu ZY, Liu YY, Wu FG, Defect states in 2D acoustic band-gap materials with bend shaped linear defects, Solid State Communications 130: 67(2004) (9)Zhang X(张欣), Liu ZY, Mei J, Liu YY Acoustic band gaps for a 2D periodic array of solid cylinders in viscous liquid, Journal of Physics: Condensed Matter 15: 8207(2003) (10)Zhang X(张欣), Liu ZY, Wu FG,Liu YY, Large 2D band gaps in three-component phononic crystals, Physics Letters A 317: 144(2003) (11)Zhang X(张欣), Liu ZY, Liu YY, Wu FG, Elastic wave band gaps for three dimensional phononic crystals with two structural units, Physics Letters A 313: 455(2003) (12)Zhang X(张欣), Wu FG, Transverse wave band gaps and longitudinal wave band gaps in solid phononic crystals, Solid State Communications, 150:27(2010) (13)Zhang X(张欣), Wu FG, Yao YW , Frequency modulation of waveguides in acoustic band gap materials consisting of solid cylinders in viscous liquid, Physics Letters A, 374:1192(2010) (14)Dong HF, Wu FG, Zhong HL, Zhang X(张欣), and Yao YW, Effects of asymmetrical rotated rectangular basis on the acoustic band gap in two dimensional acoustic crystals: the bands are twisted, Journal of Physics D: Applied Physics , 43:105404 (2010) (15)Zhang X(张欣), Wu FG, Multi channel waveguides based on two dimensional phononic crystals, Proceedings of the 2010 symposium on piezoelectricity, acoustic waves and device applications. IEEE Ultrasonics, Ferroelectricity, and Frequency Control Society, 60 (2011) (16)Yao YW, Wu FG, Zhang X(张欣), and Hou ZL, Thermal tuning of Lamb wave band structure in a two dimensional phononic crystal plate, Journal of Physics D: Applied Physics, 110:123503 (2011) (17)Yao YW, Hou ZL, Wu FG, Zhang X(张欣), Low-frequency band gaps in one dimensional thin phononic crystal plat with periodic stubbed surface, Physica B, 406:2249 (2011) (18)Dong HF, Wu FG, Zhang X(张欣), 二维光子晶体不可约布里渊区及其能带结构的研究,Scientia Sinica Phys,Mech & Astron, 41:775 (2011) (19)Yao YW, Wu FG, Hou ZL,Zhang X(张欣), Lamb waves in two-dimensional phononic crystal plate with anisotropic inclusions, Ultrasonics, 51:602 (2011) (20)Yao YW, Wu FG, Zhang X(张欣), Hou ZL,Lamb wave band gaps in locally resonant phononic crystal strip waveguides, Physics Letters A, 376:579 (2012) (21)He Y, Wu FG, Yao YW, Zhang X(张欣), Mu ZF, Yan SY, Cheng C, Effect of defect configuration on the localization of phononsin two dimensional phononic crystals, Physics Letters A, 377:889 (2013) (22) Zhaofeng Wang ,Jingfang Yu,Zhang Xin (张欣),Na Li,Bin Liu,Yanyan Li,Yuhua Wang,Weixing Wang,Yezhou Li,Lichun Zhang,Shanka Dissanayake,Steven L. Suib,Luyi Sun,Large-Scale and Controllable Synthesis of Graphene Quantum Dots from Rice Husk Biomass: A Comprehensive Utilization Strategy,ACS Applied Materials & Interfaces,8:1434-1439 (2015) (23) Aizhen Hua,Xin Zhang∗(张欣), FugenWu, YuanweiYao, CongCheng, Pingping Huang,Temperature effects on the defect states in two dimensional phononic crystals,PHYSICS LETTERS A, 378:2239(2014) (24) Aizhen Hu, Xin Zhang*(张欣), Fugen Wu and Yuanwei Yao,Enlargement of the locally resonant Lamb wave band gap of the phononic crystal plate at the deep subwavelength scale,MATERIALS RESEARCH EXPRESS,1:045801 (2014) (25) Pingping Huang, Yuanwei Yao, Fugen Wu, and Xin Zhang(张欣),Numerical study of Lamb waves band structure in one dimensional phononic crystal slabs with the anti-symmetric boundary structure,JOURNAL OF APPLIED PHYSICS, 115, 063510(2014) (26) Lu Shuifang, Zhang Xin*( 张欣), Wu fugen, Yao yuanwei, Chen Zongwang, Excited and enhanced twinborn acoustic-induced mutual forces in oblique grating structures, Journal of Applied Physics, 7:120(2016) (27) Gao Hanfeng, Zhang Xin*(张欣), Wu fugen, Yao yuanwei, Jing Li, Dirac- likepoint at high symmetric M point in a square phononic crystal,Solid State Communications, 234:35(2016) (28) 高汉峰, 张欣*,吴福根,姚源卫,二维三组元声子晶体中的半狄拉克点及奇异特性,物理学报,65:4(2016) (29) Liao Min,Wang,Qiang, Lin Qiuming, Xiong Mingxiang, Zhang Xin(张欣), Dong Huafeng, Lin Zhiping, Wen Minru, Zhu Daoyun, Mu Zhongfei*, Wu Fugen*, Na Replaces Rb towards High-Performance Narrow-Band Green Phosphors for Backlight Display Applications Advanced Optical Materials, 9(17): 2100465(2021,) (30) Feng Huiping, Yao Yuanwei*, Zhang, Xin(张欣), Wu, Fugen, Cao Yafei,Investigation of the Schoch effect based on acoustic collective surface oscillation,Journal of Applied Physics, 131(24): 245302(2022). |