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首页 > 学术论文 > 彩色相图论文期刊

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金展鹏(1938年11月-),广西荔浦县人,粉末冶金专家,“金氏相图测定法”发明人。11963年毕业于中南矿冶学院;1979年赴瑞典皇家学院做访问研究;2003年11月当选为中国科学院院士。21979年2月到1981年3月间,金展鹏研究发明了“金氏相图测定法”,奠定了其在国际相图界的权威地位;3该方法被称为材料科学的“地图“。41991年,金展鹏的“无机相图测定及计算的若干研究成果”获国家自然科学三等奖。5金展鹏院士长期从事相图计算以及相变动力学的研究,发展了合金相的热力学模型,提出了高效研究相图的扩散偶微区成分 分析方法,合作提出了阶段性亚稳相转变理论和推导亚稳相组织图的方法,评估和计算预测了一系列合金体系、氧化好锆基陶瓷体系和人上晶体体系等结构材料和功能材料的相图,并建立了相应体系的热力学和相图数据库,发表了论文170多篇,被涉及到物理学、化学、材料学以及计算机应用等方面的五十多种国外期刊广泛引用,并作为建立新理论、发展新方法、设计新材料、阐明新现象和制定新工艺的依据。

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阿里嘎多~

在国内外学术期刊发表的主要论文如下:1. Nd-Fe-B (B≤50at.%)三元系相图的研究,《中国科学》A辑,, , 1985, . Phase Diagrams of Nd-Fe-B Ternary System, <>, , , 1986, . 混合自旋 (S=1,1/2)模型具有再次近邻反铁磁相互作用晶格基态,《物理学报》, , 1988, 17074. Ising 自旋 (s=1/2)反铁磁超晶格低温热力学,《低温物理学报》 , , 1989, . Ising 自旋 (s=1) 周期超晶格反铁磁基态,《低温物理学报》 , , 1989, . Thermodynamics at low temperature of Ising antiferromagnetic superlattices, Chinese Physics (USA), , , 1990, . Temperature dependence of magnetization and paramagnetism of ferromagnetic- antiferromagnetic superlattices, J. Phys. Condens. Matters, , , 1990, . Properties of a superlattice composed of identical ferromagnetic films with antiferromagnetic interfacial coupling, J. Phys. Condens. Matters, , , 1991, . Temperature and field dependence of magnetization of superlattices with antiferromagnetic coupling, Phys. Lett. A, , , 1991, . Magnetic properties of a transverse Ising film with s=1/2, J. Phys. Condens. Matters, , , 1992, . Temperature dependence of magnetic susceptibility of antiferromagnetic superlattice, Phys. Lett. A, , 1992, . Magnetic properties of antiferromagnetic superlattices, J. Phys. Condens. Matters, , , 1993, . Phase diagrams of transverse Ising film, Physica A, , , 1993, . Magnetisation and susceptibilities of diluted Ising thin magnetic film in a transverse field, Physica A, , , 1996, . Reflection and transmission by magnetic multilayers, J. Magn. Magn. Materials, , , 2000, . Transmission by antiferromagnetic-nonmagnetic multilayers, J. Phys. Condens. Matters, , , 1999, . –k magnetostatic guided modes in ferromagnetic films, Phys. Lett. A, , , 1994, . Phase diagrams of a diluted Ising thin ferromagnetic film in a transverse field, Phys. Rev. B., , , 1995, . Phase diagrams of a diluted Ising ferromagnetic film with spin-1 in a transverse field, J. Phys. Condens. Matters, , , 1996, . 周期性调制稀释ISING 体系的相变,《物理学报>>,, , 1996, . Effects of eddy currents on retarded modes of antiferromagnets, Phys. Rev. B. , 1999, . Magnetostatic waves of metal magnetic/nonmagnetic superlattices, Phys. Rev. B. 61, , 2000, . Magnetostatic modes of a lateral antiferromagnetic/nonmagnetic superlattice, Phys. Rev. B., , , 1997, . Magnetostatic modes of antiferromagnet in a magnetic field nonmal to the surface, J. Magn. Magn. Materials, , 1999, . Magnetostatic surface and guided modes of lateral-magnetic-superlattice films,Phys. Rev. B. , , 1994, . Magnetostatic modes on lateral magnetic superlattices, Phys. Lett. A. , 1994, . Standing waves in a rectangular magnetic wire, Phys. Lett. A , 1995, . Magnetostatic modes of lateral magnetic-superlattice films in a transverse field, J. Phys. Condens. Matter, , 1997, . Magnetostatic modes of lateral magnetic superlattice in an applied field arbitrary direction, Phys. Rev. , , 1997, . Reflection and transmission by magnetic multilayers, J. Magn. Magn. Materials , 2000, . Transmission by antiferromagnetic-nonmagnetic multilayers, J. . Matter , , 1999, . Retarded modes of a lateral antiferromagnetic/nonmagnetic superlattices, Phys. Rev. B. , , 1995, . Surface retarded modes of magnetic superlattices with antiferromagnetic coupling, J. Magn. Magn. Materials, , , 2003, . Nonlinear magnetostatic surface waves of magnetic multilayers: Effective- medium theory, Phys. Rev. B. , , 2001, . Magnetostatic surface waves of lateral-magnetic superlattices, Phys. Lett. A. , 1999, . Xuan-Zhang Wang and Shu-Fang Fu, Dispersion properties of nonlinear bulk polaritons in uniaxial antiferromagnetic/nonmagnetic superlattices, J. Magn. Magn. Materals, , , 334(2004).37. Xuan-Zhang Wang and Hua Li, Nonlinear polaritons in antiferromagnetic superlattices, Phys. Rev. B,, , 054403 (2005).38. Xuan-Zhang Wang, The Faraday effect of an antiferromagnetic photonic crystal with a defect layer, J. Phys.: Condens. Matters, , , 5447 (2005).39. Jing Bai, Sheng Zhou, Feng-Li Liu and Xuan-Zhang Wang, Nonlinear infrared transmission through and reflection off antiferromagnetic films, J. Phys.: Condens. Matters, , 046217(2007).40. Rui-Hua Zhu, Cheng Jia and Xuan-Zhang Wang, Magnetostatic modes of a lateral ferromagnetic/ferromagnetic superlattice, Physics Letters A, , , 77 (2006)41.类维萍,贾城,王选章,涡流对侧向反铁磁/非磁超晶格中表面推迟模的影响,<<物理学报>> , 535(2008)42.Di Zhang, Jianing Ma, Hua Li, Shu-Fang Fu and Xuan-Zhang Wang, Anti-resonance of electron tunneling through a four-quantum-dot ring with two side-coupled quantum dots, Phys. Lett. A, , , 3085 (2008)43. Hong Gao, Zhou mingyu, Ji Hong, Xuan-Zhang Wang and Zhiguo Zhang, Synthesis and photoluminescence of Sb-induced ZnO nanowires along [0-1,1,1] with island attached, J. Alloy and Compounds, . 234-237 (2008).44. Hong Gao, Xitian Zhang, Mingyu Zhou, Zhiguo Zhang and Xuan-Zhang Wang, Nanohelices modified by SiO2 sheathed ZnO disks, Nanotechnology , 065601(2007)45. Yan Zhao, Hong Gao, Sheng Zhou, Hua Li Xuan-Zhang Wang, Nonlinear Response of Uniaxial Ferromagnets and Applications to Surface Magnetostatic Waves J. Magn. Magn. Materials, , , 2560-2567(2008)46. Zhou Sheng and Xuan-Zhang Wang, Method of enhancing second-harmonic generation of antiferromagnetic film, Journal of the Optical Society of America B, , , 1639-1644(2008).47. 宋玉玲,王选章, 一维受限反铁磁光子晶体的性质, <<光学学报>> No12 (2008)48. 尹永琦, 李华, 马佳宁, 贺泽龙, 王选章, 多端耦合量子点分子桥的量子输运特性研究, <<物理学报>> , 69(2009).49. Yu-Ling Song, Jing-Xing Ta, Hua Li and Xuan-Zhang Wang, Presence of left-handedness and negative refraction in antiferromagnetic/ionic-crystal multilayered films, J. Appl. Phys. , , 063119 (2009).50. Sheng Zhou, Hua Li, Shu-Fang Fu and Xuan-Zhang Wang, Second-Harmonic Generation from an antiferromagnetic film in one-dimension photonic crystals, Phys. Rev. B, , 205409 (2009) (12 pages)51. Jing-xiang Zhao, Yi-hong Ding, Qing-hai Cai, Xiao-guang Wang andXuan-Zhang Wang, Theoretical Studies of the Magnetism of the First-Row Adatom on the Silicon Carbide (SiC) Nanotube, J. Phys. Chemistry C , , 3825-3829 (2010)52. Jin-Xing Ta, Yu-Ling Song and Xuan-Zhang Wang, J. Appl. , 013520(2010)(4 pages)53. Shu Fang Fu, Jing Bai, Sheng Zhou, Xiu Rong Qu, Hua Li, Xuan Zhang Wang, Effects of molecular shape on polymeric liquid crystal, Key Engineering Materials, , 216-219(2010)54. Jing Bai, Shu Fang Fu and Xuan-zhang Wang, Dispersion properties of bulk polaritons in uniaxial antiferromagnetic film, Key Engineering Materials , 198-201 (2010)55. Jing Bai, Shu-Fang Fu, Sheng Zhou, Li Niu and Xuan-Zhang Wang, Nonlinear transmission through and reflection off antiferromagnetic sandwich, Materials Science Forum, (Optoelectronic materials), 995-998 (2010)56. Jing-Xiang Zhao, Yi-Hong Ding, Qing-Hai Cai, Xiao-Guang Wang, and Xuan-Zhang Wang, Chemical Functionalization of pyridine-like and porphyrin-like nitrogen-doped carbon nanotubes with transition metal atoms: A theoretical study, Theoretical Chemistry Accounts, (5-6), 727-733 (2010)57. Shu-Fang Fu and Xuan-Zhang Wang, Effects of magnetic field on shear stress of nematic liquid crystalline polymer under simple shear flow, Journal of Polymer Science: Part B48: Polymer Physics, (17), 1919-1926 (2010).58. Yu-Ling Song, Jin-Xing Ta and Xuan-Zhang Wang, Band gaps of two-dimensional antiferromagnetic photonic crystal, J. Appl. Phys. . 013525-5 (2011).59. Yan Zhao, Shu-Fang Fu and Xuan-Zhang Wang, Bistable transmission of antiferromagnetic Fabry-Perot resonator, J. Appl. Phys. . ,023512-6 (2011)59. Jing Bai, Shu-Fang Fu, Sheng Zhou and Xuan-Zhang Wang, Reflective optical bi-stability of antiferromagnetic films, The European Physical Journal B83, ,343-348(2011) Bo, Zhao J-x, Cai Qinghai, Wang Xiaoguang, and Wang Xuan-Zhang, Doping of Calcium in C60 Fullerence for enhancing CO2 capture and N2O Transformation: A Theoretical Study, J. Phys. Chem. A115 (36), 9969-9976(2011)61. Jin-Xiang Zhao, Yi-Hong Ding, Xiao-Gang Wang, Qing-Hai Cai, And Xuan-Zhang Wang, Diamond and Related Materials , 36-41(2011)62. Xuan-Zhang Wang and Hua Li, Nonlinear propagation of electromagnetic waves in antiferromagnets, in Propagation of Electromagnetic Waves in Complex Matter, edited by by Ahmed Kishk, (Intech-Open Access Publisher, 2011), . Zhao J-X, Gao Bo,Cai Qing-Hai, Wang Xiao-Guang, and Wang Xuan-Zhang,Theoretical study of phenol adsorption on the (8, 0) silicon carbide nanotube,Chemistry and Material Science : Theoretical Chemistry Accounts Vol29 , 85-92(2011).64. Dongmei Sun, Shufang Fu, Sheng Zhou and Xuan-Zhang Wang, Numerical simulation of optical bi-stability in antiferromagnetic sandwich structure, J. Magn. Magn. Materials, , , (2012)65. Jin-Xing Ta, Xuan-Zhang Wang, Optical properties of antiferromagnetic/ ion-crystal superlattices, J. Magn. Magn. Materials, , (2012) . Yu-Ling Song, Jin-Xing Ta and Xuan-Zhang Wang, High second-harmonic generation of antiferromagnetic/ion-crystal composite medium with negative refraction, J. Magn. Magn Materials , 1214-1217 (2012)67. Jin-Xing Ta and Xuan-Zhang Wang, Magneto-phonon polaritons in two-dimensional antiferromagnetic/ion-crystalic photonic crystal, Photonics and nanostructures-Fundamentals and Applications, (2012) . Yan Zhao, Shu-Fang Fu and Xuan-Zhang Wang, Nonlinear Far Infrared Transmission of Antiferromagnetic Fabry-Perot Resonator, IEEE Transaction on Magnetics, , 1597-1600(2012)69. 张强,周胜,厉强华,王选章,付淑芳,一维反铁磁光子晶体光学双稳效应研究,《物理学报》 , , 157501-7(2012)70. 周胜, 王选章,付淑芳,厉强华,曲秀荣,梁爽,张强,Voigt 位型下电介质/反铁磁体/电介质结构的二次谐波生成非倒易性研究,《物理学报》 , 187501-(2012)71. Shu-Fang Fu, Jing Bai and Xuan-Zhang Wang, Effects of magnetic field on discotic nematic liquid crystalline polymers under simple shear flow, Journal of Applied Polymer Science, (2012)72. Xuan-Zhang Wang, Coupled Edge Plasmon Modes of Metal/Dielectric Multi-Wedges, Chinese Physics B, (2013),accepted for publication73. Xuan-Zhang Wang and Yan Zhao, High Faraday effect of antiferromagnetic/ion- crystal photonic crystals in far infrared region, J. Appl. Phys. (2013), accepted for publication.

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