个人简历
--------------------------------------------------------------------------------
1967/07:北京大学物理系本科毕业
1982/05:复旦大学物理系获硕士学位
1985/02:复旦大学物理系获博士学位
曾在意大利国际理论物理中心(ICTP)做博士后,研究高温超导理论;后又曾受聘为日本东北大学金属材料研究所 (IMR) 客座教授(日本文部省杰出人才中心COE成员),研究纳米结构中电子输运性质。主持完成了四项国家自然科学基金研究项目和一项教育部博士点基金研究项目。目前正主持一项国家自然科学基金研究项目。先后主讲本科生课程:量子力学,数学物理方法,介观物理;研究生课程:高等量子力学,量子统计,重正化群等。
研究方向
--------------------------------------------------------------------------------
纳电子学理论和第一性原理的分子电子学理论
主要发表文章
--------------------------------------------------------------------------------
(1) Xi Li, Hao Chen, and Shixun Zhou, Conductance of a quantum dot with a Hubbard interaction in the presence of a boson field, Phys. Rev. B 52, 12202-6 (1995).
(2) Hao Chen, Masahito Ishihara, Zhi-Qiang Li, and Yoshiyuki Kawazoe, Strong correlation of electrons in mesoscopic ring under magnetic field, Sci. Rep. RITU, Japan A 41, 145-8 (1996).
(3) Hao Chen, Jian Wu, Zhi-Qiang Li, and Yoshiyuki Kawazoe, Numerical Simulation of Conductance through a Quantum Wire with Magnetic Impurities in the Presence of magnetic Field Modeling and simulation in metallurgical engineering and materials science ed. Yu Zongsen, Xiao Zegiang, and Xie Xishan, Metallurgical industry press, Beijing, China, p38-41.
(4) Hao Chen, Masahito Ishihara, Zhi-Qiang Li, and Yoshiyuki Kawazoe, Magnetoconductance fluctuations in a strongly correlated disordered ring at low temperatures, Phys. Rev. B 54, 17 012-7 (1996).
(5) J.L. Zhu, J. Wu, R.T. Fu, H. Chen, and Y. Kawazoe, Effects of quantum size and potential shape on the spectra of an electron and a donor in quantum dots, Phys. Rev. B 55, 1673-9 (1997).
(6) Hao Chen, Jian Wu, Zhi-Qiang Li, and Yoshiyuki Kawazoe, Correlated conductance through a lattice of quantum dots: Metal to antiferromagnetic insulator transition, Phys. Rev. B 55, 1578-81 (1997).
(7) H. Chen, Y.M. Shi, J.Z. Yu, J.L. Zhu, and Y. Kawazoe, Phonon-associated conductance through a quantum point contact, Phys. Rev. B 55, 9935-40 (1997).
(8) Hao Chen, Zhi-Qiang Li and Yoshiyuki Kawazoe, Magnetoconductance Fluctuations in a Mesoscopic Quantum Ring, Nonlinear Optics 18 (2-4), 193-196 (1997) Ishihara Masahito.
(9) Hao Chen, Jian Wu, Zhi-Qiang Li, and Yoshiyuki Kawazoe, Effect of dilute ferromagnetic impurities on transport through a quantum dot, Phys. Lett. A 240, 241-6 (1998).
(10) J. Wu, B.L. Gu, H. Chen, W.H. Duan, and Y. Kawazoe, Resonant tunneling in an Aharonov-Bohm ring with a quantum dot, Phys. Rev. Lett. 80, 1952-5 (1998).
(11) Hao Chen, Phase evolution of an Aharonov-Bohm ring with an embedded quantum dot, Int. J. Mod. Phys. B 12, 1729-35 (1998).
(12) Z.Q. Li, H. Chen, F.-Q. Kong, Q. Sun, and Y. Kawazoe, Relaxations of nonpolar zinc blende (110) surface of GaN, AlN and BN, J. Appl. Phys. 84, 1977-80 (1998).
(13) Yaoming Shi and Hao Chen, Transport through an Aharonov-Casher ring with a quantum gate, Phys. Rev. B 60, 10949-52 (1999).
(14) Hao Chen and Yaoming Shi, Antiresonances modulated by magnetic flux in an Aharonov-Bohm ring, Phys Lett. A 262, 76-82 (1999).
(15) J.Q. Lu, H. Chen, J. Wu, H. Mizuseki, and Y. Kawazoe, Ab Initio Modeling of Real Molecular Logic Devices, Mater. Trans. 42(11), 2270-5 (2001).
(16) Yaoming Shi and Hao Chen, Spin-dependent transmission through a mesoscopic ring with a quantum gate, Phys. Lett. A 299, 401-6 (2002).
(17) H. Mizuseki, N. Igarashi, C. Majumder, R.V. Belosludov, A.A. Farajian, J.-T. Wang, H. Chen, and Y. Kawazoe, Simulation study on geometric and electronic structure of photovoltaic molecules, Mat. Res. Soc. Symp. Proc. 725, 199-203 (2002).
(18) H. Chen, J.Q. Lu, J. Wu, R. Note, H. Mizuseki, Y. Kawazoe, Control of substituent ligand over current through molecular devices: An ab initio molecular orbital theory, Phys. Rev. B 67, 113408 (2003).
(19) HE Xiao-Ling, DU Si-De, CHEN Hao, LU Jing, Coherent control of transmission probability of a cold atom through microcavity potentials, Chin. Phys. Lett. 20, 456 (2003).
(20) HE Xiao-Ling, DU Si-De, ZHOU Lu-Wei, WANG Qi-Sheng, CHEN Hao, Tunnelling of two-level atoms in two-photon mazer: Atomic coherence effect and statistics of cavity fields, Chin. Phys. Lett. 21, 18-21 (2004).
(21) LIU Yu-Shen, CHEN Hao, Dynamical Localization in an Asymmetric Two-Electron Quantum Dot Molecule by an Alternating-Current Electric Field, CHIN. PHYS. LETT. 21, 923-926 (2004).
(22) Jun-Qiang Lu, Jian Wu, Hao Chen, Wenhui Duan, Bing-Lin Gu, Yoshiyuki Kawazoe, Electronic transport mechanism of a molecular electronic device: structural effects and terminal atoms, Phys. Lett. A 323, 154-158 (2004).
(23) Y.S. Liu, H. Chen, Localization and entanglement of an exciton in a quantum dot
molecule by an ac electric field, Phys. Lett. A 324, 235-241 (2004).
(24) Yao-Ming Shi, Xiu-Feng Cao, Hao Chen, Spin-polarized transmission through a mesoscopic ring with a magnetic impurity, Phys. Lett. A 324, 331-336 (2004).
(25) W.W.Cheng, Y.X.Liao, H.Chen, R.Note, H.Mizuseki, Y.Kawazoe, Electron transport through heterocyclic molecule: Ab initio molecular orbital theory, Phys. Lett. A 326, 412-416 (2004).
(26) LIAO YUN-Xing, CHEN Hao, R. Note, H. Mizuseki, Y. Kawazoe, Current-Voltage Characteristics of Molecular Devices at Low Bias, CHIN. PHYS. LETT. 21, 1247-1250 (2004).
(27) Y.S. Liu, X.F. Yang, H. Chen, Entanglement of an exciton in a quantum dot molecule in radiation pulses, Physica E 23, 193-197 (2004).
(28) X.F. Cao, Y.M. Shi, X.L. Song, H. Chen, Andreev reflection resonant tunneling through a precessing spin, Phys. Lett. A 327, 337-343 (2004).
(29) Y.S. Liu, H. Chen, Quantum entanglement in an asymmetric two-electron system driven by an ac electric field, Phys. Lett. A 328, 400-406 (2004).
(30) Xiufeng Cao, Yaoming Shi, Xiaolong Song,Shiping Zhou, Hao Chen, Spin-dependent Andreev reflection tunneling through a quantum dot with intradot spin-flip scattering, Phys. Rev. B 70, 235341 (2004).
(31) W.W.Cheng, H.Chen, R.Note, H.Mizuseki, Y.Kawazoe, Electron transport through molecular wire: effect of isomery, Physica E 25, 643-646 (2005).
(32) F.Jiang, Y.X.Zhou, H.Chen, R.Note, H.Mizuseki, Y. Kawazoe, Ab-initio study of molecule transport characteristics based on nonequilibrium Green's function theory, Phys. Rev. B 72, 155408 (2005).
(33) Yu-Shen Liu, Hao Chen, Xi-Hui Fan, and Xi-Feng Yang, Inelastic transport through a single-molecular dot in the presence of electron-electron interaction, Phys. Rev. B 73, 115310 (2006).
(34) F. Jiang, Y.X. Zhou, H. Chen, R. Note, H. Mizuseki, Y. Kawazoe, First-principles study of phenyl ethylene oligomers as current-switch, Phys. Lett. A 359, 487 (2006).
(35) F. Jiang, Y.X. Zhou, H. Chen R. Note, H. Mizuseki, Y. Kawazoe, Self-consistent study of single molecular transistor modulated by transverse field, J. Chem. Phys. 125, 084710 (2006).
(36) J. F. YE, H. CHEN, R. NOTE, H. MIZUSEKI, Y. KAWAZOE, Excess Polarizabilities Upon Excitation from the Ground State to the First Dipole-allowed Excited State of Diphenylpolyenes, Int. J. Quantum Chem. 107, 2006 (2007).
(37) Y.Y. Liang, F. Jiang, Y.X. Zhou, H. Chen, R. Note, H. Mizuseki, Y. Kawazoe, Ab-initio study of single-molecule rotation switch based on nonequilibrium Green's function theory, J. Chem. Phys. 127, 084107 (2007).
(38) Y.X.Zhou, F.Jiang, H. Chen, R.Note, H.Mizuseki, Y.Kawazoe, Quantum length dependence of the conductance in oligomers: First-principles calculations, Phys. Rev. B 75, 245407 (2007).
(39) Yu-Shen Liu, Hao. Chen, and Xi-Feng Yang, Transport properties of an Aharonov-Bohm ring with strong interdot Coulomb interaction, J. Phys.: Condens. Matter 19, 246201 (2007).
研究小组
--------------------------------------------------------------------------------
梁芙蓉 硕士 Email 理论物理平台4楼
陈灿华 硕士 Email 科学楼 55664595
刘玉申 博士 Email 科学楼 55664532
梁云烨 博士 Email 科学楼 55664532
叶剑斐 博士 Email 科学楼 55664532
周永西 博士 Email 科学楼 55664532
蒋锋 博士 Email 科学楼 55664532
联系方式
--------------------------------------------------------------------------------
通讯地址:
复旦大学物理系理论物理学
中国上海市邯郸路220号(200433)
办公室:光华楼东主楼2408室
电话:86-21-55664417
电子信箱: haochen@fudan.edu.cn