当前位置: X-MOL首页全球导师 国内导师 › 马云贵

个人简介

浙江大学光电科学与工程学院教授,2011年入选教育部新世纪优秀人才支持计划,2015年获浙江省杰出青年自然科学基金支持。分别于2000年和2005年在兰州大学获得本科和博士学位,2001至2002年赴日本信州大学交流学习。2005年被聘为新加坡国立大学物理系Research Fellow,2009年被聘为新加坡国立大学Temasek研究所Research Scientist,2011年回国被聘为浙江大学光电信息工程学系特聘研究员,2014年转升教授。目前主要从事人工光电磁材料与器件以及亚波长微纳光学等方面的前沿及应用课题研究,承担着相关方向的科技部863计划课题、国家自然科学基金等项目。迄今以第一作者或通讯人身份在Nature Materials、Physical Review Letters、Nature Communications、NPG Asia Materials等国际一流杂志发表学术论文70余篇, 部分研究成果得到了Nature News、Physics Org等国际媒体的关注和传播报道。

研究领域

人工超材料/超表面的新原理与新应用(探索新型光/电磁功能器件与技术) 近场热光辐射的新调控理论与器件应用(探索微结构光学在热能领域应用)

近期论文

查看导师最新文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

92. Magnetic-acoustic bi-physical invisible coats for underwater objects Yi Zhou, Jian Chen, Liu Liu, David Fan and Yungui Ma*, NPG Asia Materials, (2020). 91. Compact generation of arbitrarily accelerating double caustic beams with orthogonal polarizations using dielectric metasurface Rui Chen, Yi Zhou, Jie Wen Chen, Ruipin Chen and Yungui Ma*, Optics Letters 45, 551-554 (2020). 90. Analog Optical Spatial Differentiators Based on Dielectric Metasurfaces Yi Zhou, Rui Chen, Wenjie Chen, Rui-Pin Chen and Yungui Ma*, Advanced Optical Materials, doi.org/10.1002/adom.201901523. 89. Optical Analog Computing Devices Designed by Deep Neural Network Yi Zhou, Rui Chen, Wenjie Chen, Rui-Pin Chen and Yungui Ma*, Optics Communications 458, 124674 (2020). 88. Spin-dependent switchable metasurfaces using phase change materials Wenjie Chen, Rui Chen, Yi Zhou, Ruipin Chen and Yungui Ma*, Optics Express 27, 25678 (2019). 87. A switchable metasurface between meta-lens and absorber Wenjie Chen, Rui Chen, Yi Zhou and Yungui Ma*, IEEE Photonics Technology Letters 31, 1187-1190 (2019). 86. High-Speed and High-Responsivity Hybrid Silicon/Black-Phosphorus Waveguide Photodetectors at 2um Yanking Yin, Rui Cao, Jinshu Guo, Chaoyue Liu, Ja Li, Xiang Feng, Hui Wang, Wei Du, Akeel Qadir, Han Zhang, Yungui Ma, Shi Gaoming, Yang Xu, Yancheng Shi, Limin Tong and Dioxin Dai*, Laser & Photonics Reviews 13, 1900032 (2019). 85. Broadband metamaterial absorber with an in-band metasurface function Wenjie Chen, Rui Chen, Yi Zhou and Yungui Ma*, Optics Letters 44, 1076-1079 (2019). 84.Terahertz biosensing with a graphene-metamaterial heterostructure platform Wendao Xu, Lijuan Xie, J.F. Zhu, L. H. Tang, R. Singhc, Yungui Ma, Hou-Tong Chen and YibinYing*, Carbon 141, 247-252 (2019). 83. Daytime passive radiative cooler using porous alumina Yang Fu, Jiang Yang, Yishu Su, Wei Du and Yungui Ma*, Solar Energy Materials and Solar Cells 191, 50-54 (2019). 82. Far-field radiative thermal rectifier based on nanostructures with vanadium dioxide Shichao Jia, Yang Fu, Yishu Su and Yungui Ma*, Optics Letters 43(22), 5619-5622 (2018). 81. Observing of the super-Planckian near-field thermal radiation between graphene sheets PDF Jiang Yang, Wei Du, Yishu Su, Yang Fu, S.X Gong, Sailing He and Yungui Ma*, Nature Communications 9, 4033 (2018). 80. A transparent transmission-selective radar-infrared bi-stealth structure Shuomin Zhong*, Lijie Wu, Taijun Liu, Jifu Huang, Wei Jiang, and Yungui Ma*, Optics Express 26(13), 16466-16476 (2018). 79. Static magnetic cloak without a superconductor PDF Wei Jiang, Yungui Ma* and Sailing He*, Physical Review Applied 9, 054041 (2018). (Featured by a synopsis in physics and highlighted by Nature news) 78. Characteristic Analysis of Compact Spectrometer Based on Off-Axis Meta-Lens Yi Zhou, Rui Chen and Yungui Ma*, Applied Science 8, 321 (2018). (Invited paper) 77. Giant power enhancement for quasi-omnidirectional light radiation via ε-near-zero materials Shuomin Zhong*, Taijun Liu, Jifu Huang, and Yungui Ma*, Optics Express 26, 2231 (2018). 76. FeGaB(25 nm)/Al2O3/FeGaB(25 nm) Multilayer Structures: Effects of Variation of Al2O3 Thickness on Static and Dynamic Magnetic Properties Shahid Imran, Ge Yin, Jun Yuan, Yungui Ma* and Sailing He*, Rare Metal Materials & Engineering 47, 1951-1957 (2018). 75. Transformation Optics: From Classic Theory and Applications to its New Branches Fei Sun, Bin Zheng, Hongsheng Chen, Wei Jiang, Shu Guo, Yi Liu, Yungui Ma, Sailing He*, Laser & Photon Rev 11, 1700034 (2017). 74. Multilayered analog optical differentiating device: performance analysis on structural parameters Wenhui Wu, Wei Jiang, Jiang Yang, Shaoxiang Gong and Yungui Ma*, Optics Letters 42(24), 5270-5273 (2017). 73. Design of optical wavelength demultiplexer based on off-axis meta-lens Yi Zhou, Rui Chen and Yungui Ma*, Optics Letters 42, 4716-4719 (2017) 72. Photonic spin Hall effect with controlled transmission by metasurfaces Jun Yuan, Yi Zhou, Rui Chen and Yungui Ma*, Japanese Journal of Applied Physics, 56(11), 110311 (2017). 71. Design of mechanically robust metasurface lenses for RGB colors Jun Yuan, Ge Yin, Wei Jiang, Wenhui Wu and Yungui Ma*, Journal of Optics 119, 105002 (2017). (Selected as Front Cover) 70. Can researchers make a perfect optical lens? Gang Bao, Sailing He and Yungui Ma*, Chinese Science Bulletin 62,1807 (2017). 69. Influence of metal electrodes on c-axis orientation of AlN thin films deposited by DC magnetron sputtering, Shahid Imran, Jun Yuan, Ge Yin, Yungui Ma*, and Sailing He, Surface and interface analysis, DOI:10.1002/sia.6237 68. A radar-infrared bi-stealth structure based on metasurfaces Shuomin Zhong*, Wei Jiang, Peipeng Xu, Taijun Liu, Jifu Huang, and Yungui Ma*, Applied Physics Letters 110, 063502 (2017). 67. Room-temperature Broadband Quasi-Static Magnetic Cloak PDF Wei Jiang, Yungui Ma*, Jianfei Zhu, Ge Yin, Yichao Liu, Jun Yuan, and Sailing He*, NPG Asia Materials 9, e341 (2017). 66. Terahertz sensing of chlorpyrifos-methyl using metamaterials Wendao Xu , Lijuan Xie, Jianfei Zhu, Wei Wang, Zun Ye, Yungui Ma, Chao Tsai, Su Chen, Yibin Ying*, Food Chemstry 218, 330 (2017). 65. Gold Nanoparticle-Based Terahertz Metamaterial Sensors: Mechanisms and Applications, Wendao Xu, Lijuan Xie, Jianfei Zhu, Xia Xu, Zun Ye, Chen Wang, Yungui Ma, and Yibin Ying*, ACS Photonics 3, 2308 (2016). 64. Deformable broadband metamaterial absorbers engineered with an analytical spatial Kramers-Kronig permittivity profile PDF Wei Jiang, Yungui Ma*, Jun Yuan, Ge Yin, Wenhui Wu and Sailing He*, Laser and Photonics Reviews 11, 1600253 (2017). 63. Near-field heat transfer between graphene monolayers: Dispersion relation and parametric analysis Ge Yin, Jiang Yang and Yungui Ma*, Applied Physics Express 12, 1222001 (2016). 62. Super-Planckian Near-field Thermal Radiation between Graphene-hBN Heterostructures Ge Yin, Jiang Yang, Jun Yuan, and Yungui Ma*, IEEE Explore, DOI: 10.1109/PIERS.2016.7735088, (2016). 61. Modulation of Far-Infrared Light Transmission by Graphene-Silicon Schottky Junction Jun Yuan, Wei Jiang, wendao xu, Jiang Yang, Lijuan Xie, Yibin Ying and Yungui Ma*, Optical Materials Express 6, 3908-3915 (2016). 60. Plasmon–phonon coupling in graphene–hyperbolic bilayer heterostructures Ge Yin, Jun Yuan, Wei Jiang, Jianfei Zhu, and Yungui Ma*, Chinese Physics B 25, 114216 (2016). 59. Transformation thermodynamics and heat cloaking: a review Muhammad Raza, Yichao Liu, El Hang Lee and Yungui Ma*, Journal of Optics 18, 044022 (2016). 58. Three-dimensional magnetic cloak working from d.c. to 250 kHz PDF Jianfei Zhu, Wei Jiang, Yichao Liu, Ge Yin, Jun Yuan, Sailing He*, and Yungui Ma*, Nature Communications 6, 8931 (2015). 57. High-performance terahertz wave absorbers made of silicon-based metamaterials Sheng Yin, Jianfei Zhu, Wendao Xu, Wei Jiang, Lij Xie, Yibin Ying, and Yungui Ma*, Applied Physics Letters 107, 073903 (2015). 56. Controlling the plasmonic surface waves of metallic nanowires by transformation optics Yichao Liu, Jun Yuan, Ge Yin, Sailing He, and Yungui Ma*, Applied Physics Letters 107, 011902 (2015). 55. Comment on “Triple-band perfect metamaterial absorption, based on single cut-wire bar” Sheng Yin, Jianfei Zhu, Wei Jiang, Jun Yuan, Ge Yin, and Yungui Ma*, Applied Physics Letters 107, 026101 (2015). 54. The Applications of Metamaterials Huifeng Ma*, Sanming Hu, Yungui Ma, Yun Lai, and Karu Esselle, Inter J Anten and Propag729617, (2015). 53. A multi-cloak bifunctional device Muhammad Raza, Yichao Liu, and Yungui Ma*, Journal of Applied Physics 117, 024502 (2015). 52. Experimental demonstration of a multiphysics cloak: Manipulating heat flux and electric current simultaneously Yungui Ma*, Yichao Liu, Muhammad Raza, Yudong Wang, and Sailing He*, Physical Review Letters 113,205501 (2014). PDF Media report: I. By Physics Org (Nov 21, 2014): II. By Popular mechanics (Oct 24, 2014). 51. Perfect absorption in ultrathin anisotropic ε-near-zero metamaterials Shuoming Zhong, Yungui Ma, and Sailing He*, Applied Physics Letters 105, 023504 (2014). 50. Ultra-broadband terahertz metmaterial absorber Jianfei Zhu, Zhao Ma, Wu Sun, Fei Ding, Qiong He, Lei Zhou, and Yungui Ma*, Applied Physics Letters 105, 021102 (2014). 49. An efficient plate heater with uniform surface temperature engineered with effective thermal materials Yichao Liu, Wei Jiang, Sailing He, and Yungui Ma*, Optics Express 22, 170006 (2014). 48. Homogeneous anisotropic dielectric invisibility carpet cloak made of Al2O3 plates Ning Wang, Mukhtar Musawwadah, Yungui Ma, Ruifeng Huang, CK Ong, Europhysics Letters 104, 140003 (2013). 47. A transient thermal cloak experimentally realized through a rescaled diffusion equation with anisotropic thermal diffusivity Yungui Ma, Lu Lan, Wei Jiang, Fei Sun and Sailing He*, NPG Asia Materials 5, e73 (2013). PDF Media report: Nature news [Cloaking of heat, Nature 498, 440-441 (2013)] 46. Tunable metamaterials made of graphene-liquid crystal multilayers A. Madani, S. Zhong, H. Tajalli, S. Roshan Entezar, A. Namdar, and Yungui Ma*, PIER 143, 545-558 (2013) 45. Transmutation of planar media singularities in a conformal cloak Yichao Liu, Musawwadah Mukhtar, Yungui Ma, and C. K. Ong*, J. Opt. Soc. Am. A. 30, 2280–2285 (2013) 44. Subwavelength drains designed for mirror-closed dielectric lenses Yungui Ma*, Tiantian Wu, and Chongkim Ong, Journal of Optics 15, 125705 (2013) 43. Experimentally demonstrated a unidirectional electromagnetic cloak designed by topology optimization Lu Lan, Fei Sun, Yichao Liu, Chongkim Ong, and Yungui Ma*, Applied Physics Letters 103, 121113 (2013) 42. First experimental demonstration of an isotropic electromagnetic cloak with strict conformal mapping Yungui Ma, Yichao Liu, Lu Lan, Tiantian Wu, Wei Jiang, C. K. Ong, and Sailing He*, Scientific Reports 3, 2182 (2013). 41. Three dimensional subwavelength focus by a near-field plate lens Lu Lan, Wei Jiang, and Yungui Ma*, Applied Physics Letters 102, 231119 (2013) 40. A super-thin metamaterial beam compressor with an extremely high compression ratio Fei Sun, Yungui Ma, Xiaochen Ge, and Sailing He*, Optics Express 21, 7328-7336 (2013) 39. Far field free-space measurement of three-dimensional hole–in–Teflon invisibility cloak Ning Wang*, Yungui Ma, Ruifeng Huang, and C. K. Ong, Optics Express 21, 5941–5948 (2013) 38. Perfect invisibility cloaking by isotropic media Tao Xu, Yichao Liu, Chongkim Ong, Yuan Zhang and Yungui Ma*, Physical Review A 86, 043827 (2012) 37. Electromagnetic field attractor made of gradient index metamaterials, Yarong Yang, L. Y. Leng, Ning Wang, Yungui Ma*, and Chongkim Ong, J. Opt. Soc. Am. A 29, 473-475 (2012) 36. Broadband microwave Luneburg lens made of gradient index metamaterials Y. L. Loo*, Yarong Yang, Ning Wang, Yungui Ma, and Chongkim Ong, J. Opt. Soc. Am. A 29, 426-430 (2012) 35. Approaches to achieve broadband transformation optical devices with transmuted singularity Yungui Ma*, Fei Sun, Yuan Zhang, Yi Jin, and Chongkim Ong, J. Opt. Soc. Am. A, 29, 124-129 (2012) 34. Experimental demonstration of subwavelength domino plasmon devices for compact high frequency circuit Yungui Ma*, Lu Lan, Shuomin Zhong, Chongkim Ong, Optics Express 19, 21189-21198 (2011) 33. Ultrawide frequency linewidth of the permeability spectra of FeCoN thin film sputtered on the flexible substrate, Feng Xu*, Xin Chen, Nguyen Phuoc, Xiao Zhang, Yungui Ma, C K Ong, J. magn. and magn. mater. 322, 3262-3265 (2010) 32. Application of inverse, strict conformal transformation to design waveguide devices Yungui Ma*, Ning Wang, and Chongkim Ong,Journal Optical Society America A 27, 968-972 (2010) 31. An omnidirectional retroreflector based on the transmutation of dielectric singularities Yungui Ma, Chongkim Ong, Tomas Tyc, and Ulf Leonhardt*, Nature Materials 8, 639-642 (2009). Media report: I. NBC NEWS.com 7/17/2009; II. The Strait Times, July 4, 2009 30. Near-field plane-wave-like beam emitting antenna fabricated by anisotropic metamaterial Yungui Ma*, Peng Wang, Xin Chen, and Chongkim Ong, Applied Physics Letters 94, 044107 (2009) 29. High frequency dielectric properties distribution of BiFeO3 thin film using near-field microwave microscopy Xiaoyu Zhang, Xuancong Wang,Feng Xu, Yungui Ma, and C K Ong, Review of Scientific Instruments 80, 114701 (2009) 28. Structure and magnetic characterizations of cobalt ferrite films prepared by spray pyrolysis Lixian Phan, Feng Xu. Yungui Ma, and C. K. Ong, Thin Solid Films 517, 5858-5861 (2009) 27. The role of magnetoelastic strain on orbital control and transport properties in a LaTiO3-CoFe2O4 heterostructure J. Li, H.F. Chu, Y. Zhang, J. Wang, Q. Song, P. Wang, Yungui Ma, C. K. Ong, S. J. Wang, J of Physics-C 21, 276002 (2009) 26. High-frequency permeability spectra of FeCoSiN/Al2O3 laminated films F. Xu, N. N. Phuoc, X. Y. Zhang, Yunguui Ma, and C. K. Ong, Journal of Applied Physics 105, 043902 (2009) 25. Fabrication of negative index materials using dielectric and metallic composite route Yungui Ma*, L. Zhao, P. Wang, and C. K. Ong, Applied Physics Letters 93, 184103 (2008) 24. Negative refractive index of metallic cross-I-shaped pairs: Origin and evolution with pair gap width Yungui Ma*, X. C. Wang, and C. K. Ong, Physical Review E 78, 016605 (2008) 23. Influence of Si concentration on the magnetization dynamics in as-sputtered FeCoSiN thin films at high frequencies F. Xu, X. Chen, Yungui Ma, N. N. Phuoc, X. Y. Zhang, and C. K. Ong, Journal of Applied Physics 104, 083915 (2008) 22. Analysis of conductor loss in interdigital capacitor based measurement of dielectric constant of ferroelectric thin film P. Wang, C. Y. Tan, Yungui Ma, W. N. Chen, and C. K. Ong, Microwave and Optical Technology Letters 50, 566-568 (2008) 21. Generation of surface-plasmon-polariton like resonance mode in microwave metallic gratings Yungui Ma* and C. K. Ong, New Journal of Physics 10, 063017 (2008) 20. Enhancement of exchange bias and ferromagnetic resonance frequency by using multilayer antidot arrays N. N. Phuoc, S. L. Lim, Yungui Ma, and C. K. Ong, Journal of Applied Physics 104, 093708 (2008) 19. Magnetic anisotropy and resonance frequency of patterned soft magnetic strips X. Chen, Y. G. Ma and C. K. Ong, Journal of Applied Physics 104, 013921 (2008). 18. Evolution of microwave resonance in reflection metallic gratings under inner gap modification Yungui Ma*, X. S. Rao, and C. K. Ong, Journal of Applied Physics 103, 123510 (2008) 17. Co-based nanogranular thin films on flexible substrate for gigahertz applications Z. W. Liu, Y. Liu, Yungui Ma, C. Y. Tan, and C. K. Ong, Journal of Magnetism and Magnetic Materials 313, 37-42 (2007) 16. Microwave transmission modes in compound metallic gratings Yungui Ma*, X. S. Rao, G. F. Zhang, and C. K. Ong, Physical Review B 76, 085413 (2007) 15. Ferromagnetic resonance frequency tuning of FeTaN thin films by strips patterning with angular displacements C. Y. Tan, X. Chen, Yungui Ma, Y. Liu, Z. W. Liu, and C. K. Ong, Journal of Physics D-Applied Physics 40, 6888-6891 (2007) 14. Soft magnetic properties and high frequency permeability in [CoAlO/oxide] multilayer films Yungui Ma* and C. K. Ong, Journal of Physics D: Applied physics 40, 3286-3291 (2007) 13. Room temperature ferroelectric, ferromagnetic and magnetoelectric properties of Ba-doped BiFeO3 thin films M. Y. Li, M. Ning, Yungui Ma, Q. B. Wu, and C. K. Ong, Journal of Physics D-Applied Physics 40, 1603-1607 (2007) 12. Magnetoelectric effect in epitaxial Pb(Zr0.52Ti0.48)O3/La0.7Sr0.3MnO3 composite thin film Yungui Ma*, W. N. Cheng, M. Ning, and C. K. Ong, Applied Physics Letters 90, 152911 (2007) 11. Evolution of magnetic and transport properties in pore-modified CoAlO antidot arrays Yungui Ma*, S. L. Lim, and C. K. Ong, Journal of Physics D: Applied Physics 40, 935-941 (2007) 10. Planar tunable high-temperature superconductor microwave broadband phase shifter with patterned ferroelectric thin film P. Wang, C. Y. Tan, Yungui Ma, W. N. Chen, and C. K. Ong, Superconductor Science & Technology 20,77-80 (2007) 9. Electron Transport Properties in CoAlO Composite Antidot Arrays Yungui Ma*, H. J. Liu, and C. K. Ong, Europhysics Letters 76 (6), 1144-1150 (2006) 8. Magnetic Anisotropy and High Frequency Permeability of Multilayered Nanocomposite FeAlO Thin Films Yungui Ma*, Y. Liu, C. Y. Tan, Z. W. Liu, and C. K. Ong, Journal of Applied Physics 100, 054307 (2006) 7. Effects of Additive Elements (Cu, Zr, Al) on Morphological and Magnetic Properties of NdFeB Thin Films with Perpendicular Magnetic Anisotropy Yungui Ma, R.S. Li, Z. Yang,M. Matsumoto, A. Morisako, and S. Takei,Materials Science and Engineering B 117, 287-291 (2005) 6. Reduction of crystallization temperature of the Nd-Fe-B thin films by Cu addition Yungui Ma, Z. Yang, M. Matsumoto, A. Morisako, and S. Takei,Materials Science and Engineering B 110,190-194 (2004) 5. Reduction of grain size and exchange coupling strength of Nd2Fe14B thin films by Al addition Yungui Ma, Z. Yang, M. Matsumoto, A. Morisako, and S. Takei,Physica Status Solidi (a) 201, 2112-2118 (2004) 4. Effects of Underlayer Materials and Substrate Temperatures on the Structural and Magnetic Properties of Nd2Fe14B film Yungui Ma, Z. Yang,M. Matsumoto, A. Morisako, and S. Takei,Chinese Physics 13, 1969-1974 (2004) 3. A Study of Sputtering Process for Nanocrystalline FeAlN Soft Magnetic Thin Film Yungui Ma, X. H. Li, T. Xie, F. L. Wei, and Z. Yang,Materials Science and Engineering B 103, 233-240 (2003) 2. Effects of composition and temperature of crystallization on the microstructure and magnetic properties of NdFeB thin films for perpendicular recording media Yungui Ma, Z. Yang, M. Matsumoto, A. Morisako, and S. Takei, Physica Status Solidi (a) 199, 491-500 (2003) 1. Structural and magnetic properties of NdFeB thin films sputtered on W underlayers Yungui Ma, Z. Yang, M. Matsumoto, A. Morisako, and S. Takei,Journal of Magnetism and Magnetic Materials 267, 341-346 (2003) II. TALKS ON CONFERENCE/WORKSHOP (Invited/Contributed) 26. 马云贵,空间因果关系KK介质以及其应用, 第八届光学青年论坛(杭州, 2016年11月9日). 25. Yungui Ma, Omni-directional and deformable absorbers engineered with a spatial Kramers-Kronig (KK) dielectric profile, 37th PIERS (Aug 8-11, 2016, Shanghai). 24. 马云贵,超材料在隐身、吸波与热辐射调控方面的研究进展, 2016年度超材料学术与应用研讨会(成都,2016年4月8日) 23. Yungui Ma, Omni-directional and deformable absorbers engineered with a spatial Kramers-Kronig (KK) dielectric profile,2016 IUMRS-ICEM (July 4-8, 2016, Singapore). 22. Yungui Ma, Invisible cloaks for quasi-static fields, 第七届光学青年论坛(广州, Dec 16, 2015). 21. Yungui Ma, Metamaterials and applications, International symposium of lasers and applications (7-9 DEC 2015, Islamabad) (keynote). 20. Yungui Ma, Invisible cloaking governed by Laplacian Equations, ICAIT (Oct 25-27, 2015, Hangzhou). 19. Yungui Ma, Transformation Optics and Applications, ICIAM (Aug 10-14, 2015, Beijing). 18. Yungui Ma, Yichao Liu, Jianfei Zhu, We Jiang, Realization of invisible cloaking for multiphysics, 36th PIERS (Prague, July 8, 2015). 17. Yungui Ma, Transformation thermodynamics: Heat flux control and device applications, the 3rd AES (Hangzhou, Dec 7-10, 2014). 16. Yungui Ma, Novel artificial electromagnetic materials and applications, 2014之江论坛 (宁波, Sep 21-22, 2014 ). 15. Yungui Ma, Invisible cloaking from electromagnetic waves to heat flux,JORCEP workshop (Guangzhou, Aug 29, 2014). 14. Yungui Ma, et al, Transformation thermodynamics: Heat flux control and device applications,35th PIERS (Guangzhou, Aug 25-28, 2014). 13. Yichao Liu and Yungui Ma, Electromagnetic cloaks made of isotropic materials,35th PIERS (Guangzhou, Aug 25-28, 2014). 12. We Jiang, Lan Lu and Yungui Ma, Three dimensional subwavelength focusing by a near-field plate lens, 35th PIERS (Guangzhou, Aug 25-28, 2014). 11. Yungui Ma, Manipulating wave/flux with engineered artificial materials, 第六届青年光学年会(西安,July 31 - Aug 2, 2014). 10. Yungui Ma, et al,Transformation thermodynamics: Heat flux control and device applications, 34th URSI GASS (Beijing, Aug 16-23, 2014). 9. Yungui Ma, Invisible cloaking from electromagnetic waves to heat flux, 3th International Conference on Interdisciplinary Applied and Comp Mathematics (Hangzhou, June 7-9, 2014). 8. Yungui Ma, Manipulation of heat flux for thermal cloaking, International workshop on wave functional materials 2013 (suzhou, Nov 9-11). 7. Yungui Ma, Some recent progress on metamaterial research, JORCEP 10 Years workshop (KTH, Stockholm, Sweden, Aug 16, 2013). 6. Yungui Ma, Broadband isotropic cloak designed by conformal mapping, 34th PIERS (Stockholm, Sweden, Aug 12-15, 2013). 5. Yungui Ma, To Invisibility and beyond, CIMTEC 2012 (Montecatini Terme, Italy, June 11-16, 2012). 4. Yungui Ma, Metamaterial microwave lenses, PIERS 2011 (Suzhou, China, Sep 12-16, 2011). 3. Yungui Ma, Application of transformation optics for dielectric singular lens, Metamaterial workshop_Hangzhou, (Hangzhou, China, April 2011). 2. Yungui Ma and C. K. Ong, Transmutation of singularities demonstrated in microwave metamaterials. 5th Singapore and China Joint Symposium (NUS, Singapore, July 24, 2009). 1. Yungui Ma, Microwave electromagnetic materials--modeling and fabrication, 9th Frontier Science Symposium (NUS, Singapore, Oct 17, 2008).

推荐链接
down
wechat
bug