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梁彬
发布人:佚名 信息来源:本站原创  发布时间:2015年08月07日 点击数量:



梁彬
,教授
Bin LIANG, Professor
 
2009年南京大学骨干教师
2010年南京大学中青年学术带头人
2012年首批国家优秀青年科学基金、教育部新世纪优秀人才
2013年南京大学人工微结构与量子调控协同创新中心唐仲英特聘教授
2014年南京大学第二批登峰人才培养计划(B层次)
 
地址:江苏省南京市汉口路22号 南京大学声学研究所,210093
电话: 83593327
电子邮件liangbin@nju.edu.cn

教育背景和工作经历
1998年9月-2002年6月                  南京大学电子科学与工程系              本科
2002年9月-2007年6月                  南京大学电子科学与工程系              博士
2007年8月-2009年12月                南京大学电子科学与工程系              讲师
2009年12月-2014年底                   南京大学物理学院                            副教授
2015年至今                                     南京大学物理学院                            教授

国外学术经历
2013年8月-2014年8月    美国伊利诺伊大学香槟分校 访问学者

研究领域:
声学人工材料中的新奇声学现象及其调控机理
 
承担的科研项目:
1、声学(国家自然基金委优秀青年科学基金项目,2013.1-2015.12)
2、声二极管器件的设计、制备与性能优化 (国家自然科学基金委面上项目,2012.1-2015.12)
3、含气泡软媒质中的声传播特性研究(国家自然科学基金委面上项目(青年),2009.1-2011.12
4、声二极管效应研究 (教育部高等学校博士学科点专项科研基金,2011.1-2013.12)
 
教学情况:
1、声学测量实验  (本科生)
2、理论物理I       (本科生)
3、理论物理II      (本科生)

发表论文目录(“*”表示为通讯作者)
  1. Liang, B., Guo, X., Tu, J., Zhang, D. & Cheng, J* An acoustic rectifier. Nature Mater. 9, 989-992 (2010).
  2. Liang, B., Yuan, B. & Cheng, J.-c.* Acoustic diode: Rectification of acoustic energy flux in one-dimensional systems. Phys. Rev. Lett. 103, 104301 (2009).
  3. Zhu, X., Liang, B.*, Kan, W., Zou, X. & Cheng, J* Acoustic cloaking by a superlens with single-negative materials. Phys. Rev. Lett. 106, 014301 (2011).
  4. Zhu, Y.-F., Zou, X.-Y., Li, R.-Q., Jiang, X., Tu, J., Liang, B.* & Cheng, J.-C.* Dispersionless Manipulation of Reflected Acoustic Wavefront by Subwavelength Corrugated Surface. Sci. Rep. 5 (2015).
  5. Li, Y., Yu, G., Liang, B.*, Zou, X., Li, G., Cheng, S. & Cheng, J.* Three-dimensional Ultrathin Planar Lenses by Acoustic Metamaterials. Sci. Rep. 4 (2014).
  6. Li, Y., Liang, B.*, Gu, Z.-m., Zou, X.-y. & Cheng, J.-c.* Reflected wavefront manipulation based on ultrathin planar acoustic metasurfaces. Sci. Rep. 3 (2013).
  7. Liang, B., Kan, W.-w., Zou, X.-y., Yin, L.-l. & Cheng, J.-c.* Acoustic transistor: Amplification and switch of sound by sound. Appl. Phys. Lett. 105, 083510 (2014).
  8. Kan, W., Liang, B.*, Zhu, X., Li, R., Zou, X., Wu, H., Yang, J. & Cheng, J.* Acoustic illusion near boundaries of arbitrary curved geometry. Sci. Rep. 3 (2013).
  9. Kan, W., García-Chocano, V. M., Cervera, F., Liang, B.*, Zou, X.-y., Yin, L.-l., Cheng, J. & Sánchez-Dehesa, J. Broadband Acoustic Cloaking within an Arbitrary Hard Cavity. Physical Review Applied 3, 064019 (2015).
  10. Li, Y., Jiang, X., Li, R.-q., Liang, B.*, Zou, X.-y., Yin, L.-l. & Cheng, J.-c.* Experimental realization of full control of reflected waves with subwavelength acoustic metasurfaces. Physical Review Applied 2, 064002 (2014).
  11. Zhu, Y.-F., Zou, X.-Y., Liang, B.* & Cheng, J.-c.* Broadband unidirectional transmission of sound in unblocked channel. Appl. Phys. Lett. 106, 173508 (2015).
  12. Jiang, X. et al. Ultra-broadband absorption by acoustic metamaterials. Appl. Phys. Lett. 105, 243505 (2014).
  13. Jiang, X., Liang, B., Zou, X.-y., Yin, L.-l. & Cheng, J.-c.* Broadband field rotator based on acoustic metamaterials. Appl. Phys. Lett. 104, 083510 (2014).
  14. Zhang, Z. Liang, B.*, Li, R. Q., et al. Broadband acoustic manipulation by mimicking an arbitrary potential well. Appl. Phys. Lett. 104, 243512 (2014).
  15. Li, Y., Liang, B.*, Zou, X.-y. & Cheng, J.-c.* Extraordinary acoustic transmission through ultrathin acoustic metamaterials by coiling up space. Appl. Phys. Lett. 103, 063509 (2013).
  16. Li, Y., Liang, B.*, Gu, Z.-m., Zou, X.-y. & Cheng, J.-c.* Unidirectional acoustic transmission through a prism with near-zero refractive index. Appl. Phys. Lett. 103, 053505 (2013).
  17. Li, Y., Liang, B*, Tao, X., Zhu, X.-f., Zou, X.-y. & Cheng, J.-c. Acoustic focusing by coiling up space. Appl. Phys. Lett. 101, 233508 (2012).
  18. Li, R.-Q., Liang, B*, Li, Y., Kan, W.-W., Zou, X.-Y. & Cheng, J.-C. Broadband asymmetric acoustic transmission in a gradient-index structure. Appl. Phys. Lett. 101, 263502 (2012).
  19. Xu, T., Zhu, X.-F., Liang, B.*, Li, Y., Zou, X.-Y. & Cheng, J.-C.* Scattering reduction for an acoustic sensor using a multilayered shell comprising a pair of homogeneous isotropic single-negative media. Appl. Phys. Lett. 101, 033509 (2012).
  20. Li, R.-Q., Zhu, X.-F., Liang, B.*, Li, Y., Zou, X.-Y. & Cheng, J.-C.* A broadband acoustic omnidirectional absorber comprising positive-index materials. Appl. Phys. Lett. 99, 193507 (2011).
  21. Yuan, B., Liang, B., Tao, J.-c., Zou, X.-y. & Cheng, J.-c.* Broadband directional acoustic waveguide with high efficiency. Appl. Phys. Lett. 101, 043503 (2012).
  22. Gu, Z.-m., Liang, B.*, Li, Y., Zou, X.-y., Yin, L.-l. & Cheng, J.-c.* Experimental realization of broadband acoustic omnidirectional absorber by homogeneous anisotropic metamaterials. J. Appl. Phys. 117, 074502 (2015)
  23. Jiang, X., Liang, B. & Cheng, J.-c.* Design and Fabrication of Acoustic Rotator Based on Extremely-anisotropic Metamaterials. PIERS Proceedings (2014).
  24. Zou, X.-Y., Liang, B.*, Yuan, Y., Zhu, X.-F. & Cheng, J.-c.* Controllable acoustic rectification in one-dimensional piezoelectric composite plates. J. Appl. Phys. 114, 164504 (2013).
  25. Zhong-Ming, G., Bin, L.* & Jian-Chun, C. Analytical model of an acoustic diode comprising a superlattice and a nonlinear medium. Chinese Phys B 22, 014303 (2013).
  26. Kan, W. et al. Acoustic one-way frequency up-converter with high transmission efficiency. J. Appl. Phys. 114, 134508 (2013).
  27. Guo, X. et al. Modeling and optimization of an acoustic diode based on micro-bubble nonlinearity. The Journal of the Acoustical Society of America 133, 1119-1125 (2013).
  28. Cheng, J.-c., Liang, B. & Zhu, X.-f. Conceal an acoustic sensor by using single-negative acoustic materials. Proceedings of Meetings on Acoustics 19, 065040 (2013).
  29. Xue-Feng, Z., Xin-Ye, Z., Xiao-Wei, Z., Bin, L. & Jian-Chun, C. Concealing a passive sensing system with single-negative layers. Chin. Phys. Lett. 29, 014102 (2012).
  30. Li, Y., Tu, J., Liang, B*, Guo, X., Zhang, D. & Cheng, J. Unidirectional acoustic transmission based on source pattern reconstruction. J. Appl. Phys. 112, 064504 (2012).
  31. Liang, B., Guo, X., Tu, J., Zhang, D. & Cheng, J* Acoustic diode. The Journal of the Acoustical Society of America 131, 3291-3291 (2012).
  32. Cheng, J*, Zhang, D., Liang, B., Guo, X. & Tu, J. Acoustic diode. The Journal of the Acoustical Society of America 131, 3281-3281 (2012).
  33. Zou, X.-Y., Xu, S.-Z., Liang, B. & Cheng, J.-c.* Modulation of the bandgaps of in-plane elastic waves by out-of-plane wavenumber in the piezoelectric composite structures. Smart Materials and Structures 20, 035009 (2011).
  34. Zhu, X., Zou, X., Liang, B. & Cheng, J* One-way mode transmission in one-dimensional phononic crystal plates. J. Appl. Phys. 108, 124909 (2010).
  35. Liang, B., Zou, X.-y., Yuan, B. & Cheng, J.-c.* Frequency-dependence of the acoustic rectifying efficiency of an acoustic diode model. Appl. Phys. Lett. 96, 233511 (2010).
  36. Kan, W.-W. et al. Nonpropagating X-shaped acoustic waves in sonic crystals without defects. Appl. Phys. Lett. 97, 223504 (2010).
  37. Bin, L., Xin-Ye, Z. & Jian-Chun, C. Localisation and phase transition of acoustic waves in a soft medium containing air bubbles. Chinese Phys B 19, 094301 (2010).
  38. Zou, X.-Y., Liang, B., Chen, Q. & Cheng, J.-c.* Band gaps of lamb waves in one-dimensional piezoelectric composite plates: effect of substrate and boundary conditions. Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on 56, 361-367 (2009).
  39. Bin, L., Xin-Ye, Z. & Jian-Chun, C. Phase transition in acoustic localization in a soft medium permeated with air bubbles. Chin. Phys. Lett. 26, 024301 (2009).
  40. Zou, X.-Y., Chen, Q., Liang, B. & Cheng, J.-c.* Control of the elastic wave bandgaps in two-dimensional piezoelectric periodic structures. Smart Materials and Structures 17, 015008 (2008).
  41. Liang, B., Zou, X. & Cheng, J* Effective medium method for sound propagation in a soft medium containing air bubbles. The Journal of the Acoustical Society of America 124, 1419-1429 (2008).
  42. Liang, B. & Cheng, J.-c.* Acoustic localization in weakly compressible elastic media containing random air bubbles. Phys. Rev. E 75, 016605 (2007).
  43. Bin, L. & Jian-Chun, C. Optimal acoustic attenuation of weakly compressible media permeated with air bubbles. Chin. Phys. Lett. 24, 1607 (2007).
  44. Qin, B., Liang, B., Zhu, Z.-m. & Cheng, J.-c.* Effective medium method of slightly compressible elastic media permeated with air-filled bubbles. Frontiers of Physics in China 1, 500-505 (2006).
  45. Fan, Z., Ma, J., Liang, B., Zhu, Z.* & Cheng, J The nonlinear acoustic wave propagation in porous rubberlike medium. Acta Acust United Ac 92, 217-224 (2006).
  46. Fan, Z., Ma, J., Liang, B., Zhu, Z.* & Cheng, J. in INNOVATIONS IN NONLINEAR ACOUSTICS: ISNA17-17th International Symposium on Nonlinear Acoustics including the International Sonic Boom Forum.  99-103 (AIP Publishing).
  47. Bin, L., Zhe-Min, Z. & Jian-Chun, C. Propagation of acoustic wave in viscoelastic medium permeated with air bubbles. Chinese Phys 15, 412 (2006).
  48. Bin, L., Zhe-Min, Z. & Jian-Chun, C. Acoustic localization in weakly compressible elastic media permeated with air bubbles. Chin. Phys. Lett. 23, 871 (2006).
  49. Zhu, X., Zou, X., Chen, Q., Liang, B. & Cheng, J.-c.* Concealing an Electromagnetic Sensing System Using Three Kinds of Isotropic Homogeneous Single-negative Materials. Session 1P2 Transformation Optics and Cloaking, 85.
  50. Li, Y., Liang, B. & Cheng, J.-c.* Acoustic One-way Manipulation with Near-zero Index Metamaterials. Session 3P8 SC2: Zero-index Media, Extremely Anisotropic Media, and Nonlocal Photonic Media, 1502.
 
 
授权发明专利:
1、程建春,梁彬,章东,郭霞生,屠娟;Acoustic Diode,美国发明专利,Patent No. US 8511 423 B2,2013年8月授权         2/5
2、程建春,梁彬,章东,郭霞生,屠娟;一种声二极管及检测声二极管的系统,国内发明专利,专利号201110028240
 
 
教科书和专著章节:
1、Bin Liang, Jian-chun Cheng, Xin-ye Zou and Ying Yuan, “Acoustic propagation in bubbly soft media”, Chap 10 in “Waves in Fluids and Solids”, Ruben Pico Vila (Ed.), INTECH,2010
2、Xin-ye Zou, Bin Liang, Jian-chun Chengand Xue-feng Zhu, “Acoustic Waves in Phononic Crystal Plates”, Chapter 6 in “Acoustic Waves”, Don Dissanayake (Ed.), INTECH,2011
 
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