About
Education2006-2009, PhD, School of Molecules, Arizona State University 2002-2005, Master, Deparment of Chemical Physics, University of Science and Technology of China WorkExperience2011- present, Associate Professor,State Key Laboratory of Precision Spectroscopy,East China Normal University 2018-2019, Visting Scholar, School of Molecules, Arizona State University 2009-2011, PostDoctor, Department of Chemistry, University of California-Davis ResumeOther Appointments2005 -- 2006: Department of Chemistry, Chinese University of Hong Kong; Research Fields1. Precision spectroscopy of atoms and molecules 2. Interaction of molecules with electric field and magnetic field 3. Reaction dynamcis and kinetics of molecules and radicals 4. Application of spectroscopic technologies Enrollment and TrainingCourseFor undergraduates: 1. 《Electrodynamics》 2. 《Physics Experiments II》 3. 《General Physics-electromagnetics》 4. 《General Physics-optics》 For graduates: 1. 《Molecular Spectroscopy》 2. 《Introduction of Spectroscopy》 ScientificAcademic AchievementsPUBLICATIONS: Cheng Zhu+, Hailing Wang+, Iakov Medvedkov+, Joshua Marks, Minggao Xu, Jiuzhong Yang, Tao Yang*, Yang Pan*, and Ralf I. Kaiser*, J. Phys. Chem. Lett. 13, 6875–6882 (2022) https://doi.org/10.1021/acs.jpclett.2c01628 2. Fine and hyperfine interactions of PbF studied by laser-induced fluorescence spectroscopy Chengcheng Zhu, Hailing Wang*, Ben Chen, Yini Chen, Tao Yang, Jianping Yin*, Jinjun Liu, J. Chem. Phys. 157(8), 084307 (2022) https://doi.org/10.1063/5.0099716 3. The spectroscopic study of the Ben Chen, Yini Chen, Jianuan Pan, Jiapin Yin, Hailing Wang*, Chin. Phys. B 31, 093301 (2022) 4. The rovibronic spectra of PbS in the range of 19 520–22 900 cm-1 Yini Chen, Ben Chen, Jianping Yin, Hailing Wang*, Chin. J. Chem. Phys. (online) 5. High Resolution Spectroscopic Measurement of 130Te2: Reference Lines near 444.4 nm for eEDM Experiment using PbF molecules Qingning Lin, Renjun Pang, Zeshen Wang, Shunyong Hou, Hailing Wang, Jianping Yin*, Tao Yang*, Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 270, 120754 (2022) https://doi.org/10.1016/j.saa.2021.120754 Chengcheng Zhu, Ben Chen, Yini Chen, Tao Yang, Hailing Wang*, Jinpin Yin, Journal of the Optical Society of America B: Optical Physics, 38(10), 2881 (2021) https://doi.org/10.1364/JOSAB.428553 7. Theoretical calculation on isotope shifts of N (I) Yan Zhang, Qingning Lin, Tao Yang, Jianping Yin, Hailing Wang*, Chin. J. Chem. Phys., 33(6), 686, (2020) 8. Fine and hyperfine interaction in 173YbF Hailing Wang, Anh T. Le, Timothy C. Steimle, Elise Anne C. Koskelo, Graceson Aufderheide, Richard Mawhorter, and Jens-Uwe Grabow, Phys. Rev. A 100, 022516 (2019) https://doi.org/10.1103/PhysRevA.100.022516 9. Absorption spectrum of neutral krypton in the near infrared region R. Jiang, J. Ye, L. Deng, H. Wang*, Chin. J. Chem. Phys., 32(5), 536 (2019) 10. Laser-cooled HgF as a promising candidate to measure the electric dipole moment of the electron Zhenghai Yang, Jing Li, Qinning Lin, Liang Xu, Hailing Wang, Tao Yang, and Jianping Yin, Phys. Rev. A 99, 032502 (2019) https://doi.org/10.1103/PhysRevA.99.032502 11. Hyperfine structure investigations in atomic iodine X. Mu, L. Deng*, X. Huo, J. Ye, L. Windholz, H. Wang*, Journal of Quantitative Spectroscopy and Radiative Transfer, 217, 229-234 (2018) 12. Re-investigation of the (3, 0) band in the b4S-a4P system for nitric oxide by laser absorption spectroscopy Ch. Li, L. Shao, H. Wang, Q. Zhou, X. Qiu, J. Wei, L. Deng, Y. Chen, J. Mol. Spectrosc., 346, 1-3 (2018) 13. Laser slowing and cooling of chemically stable molecules and MOT technology Y. Xia, H. Wang, L. Xu, J. Yin*, Phys., 47 (1), 24-32 (2018) 14. Hyperfine structure of atomic fluorine (F I) X. Huo, L. Deng*, L. Windholz, X. Mu, H. Wang*,Journal of Quantitative Spectroscopy and Radiative Transfer, 205, 1-6 (2018) 15. Theoretical calculation of hyperfine structure and g-factor of ground state of mercuric fluoride molecule M. Hao, H. Wang*, J. Yin, Acta Optica Sinica, 37(09), 0902001 (2017) 16. Absorption spectra and isotope shifts of the (2, 0), (3, 1), and (8, 5) bands of the A2Πu-X2Σg+ system of 15N2+ in near infrared J. Ye, H. Wang*, L. Deng*, Chinese Physics B, 26(10), 103102 (2017) 17. Hyperfine structure constants of atomic bromine (Br I) X. Ni, L. Deng, H. Wang, Journal of Quantitative Spectroscopy & Radiative Transfer 196, 165–168 (2017) 18. Spectra of I2+ for possible measurement of α and μ constant X. Mu, C. Li, L. Deng, H. Wang, Acta Physica Sinica, 66(23), 233301(2017) 19. A high-resolution vacuum ultraviolet laser photoionization and photoelectron study of Co atom H. Huang, H. Wang, Z. Luo, X. Shi, Y. Chang, and C. Y. Ng, The Astrophysical Journal, 833, 205 (2016) 20. Isotope Shifts of Nitrogen around 800 nm J. Bai, H. Wang*, X. Ni, L. Deng*, Chin. Chem. Phys., 29(5), 527 (2016) 21. Dependences of Q-branch integrated intensity of linear-molecule pendular spectra on electric-field strength and rotational temperature and its potential applications M. Deng, H. Wang, Q. Wang, J. Yin, Sci. Rep. 6, 26776 (2016) 22. Franck-Condon Factors and Band Origins for MgH in the A2P-X2 S+ System X. Cheng, J. Bai, J. Yin, H. Wang*, Chin. Chem. Phys., 28(3), 253-256 (2015) 23. Dependence of Q-branch intensity of pendular state molecules on electric field and molecular orientation and their applications F. Mao, M. Deng, H. Wang*, J. Yin, Acta Optica Sinica, 10, 297-303 (2015) 24. The electric dipole moment of magnesium deuteride, MgD T. C. Steimle, R. Zhang, H. Wang, J. Chem. Phys., 140(22), 224308 (2014) 25. Generation of a dark hollow beam by a nonlinear ZnSe crystal and its propagation properties in free space: Theoretical analysis X. Du, Y. Yin, G. Zheng, C. Guo, Y. Sun, Z. Zhou, S. Bai, H. Wang, Y. Xia, J. Yin, Optics Communications, 322, 179-182 (2014) 26. Electrostatic surface trap for cold polar molecules on a chip Q. Wang, S. Li, S. Hou, Y. Xia, H. Wang, and J. Yin, Chin. Phys. B 23(1), 013701 (2014) 27. Adiabatic cooling for cold polar molecules on a chip using a controllable high-efficiency electrostatic surface trap S. Li, L. Xu, Y. Xia, H. Wang, J. Yin*, Chinese Physics B, (12), 152 (2014) 28. The Zeeman effect in the [17.6]7.5–X18.5 transition of holmium monoxide C. Linton, T.C. Steimle, H. Wang,J. Mol. Spectro. 275, 15–20 (2012) 29. A vacuum-ultraviolet laser pulsed field ionization-photoelectron study of sulfur monoxide (SO) and its cation (SO+) C. Lam, H. Wang, Y. Xu, K. Lau, and C. Y. Ng, J. Chem. Phys. 134, 144304 (2011) 30. High-resolution threshold photoelectron study of the propargyl radical by the vacuum ultraviolet laser velocity-map imaging method H. Gao, Y. Xu, L. Yang, C. Lam, H. Wang, J. Zhou, and C. Y. Ng, J. Chem. Phys. 135, 224304 (2011) 31. The permanent electric dipole moment of cobalt monofluoride, CoF and monohydride, CoH H. Wang, X. Zhuang, T. C. Steimle, J. Phys. Chem. 131, 114315 (2009) 32. Hyperfine structure and Zeeman tuning of the A2P−X2S+(0,0) band system of the odd isotopologue of strontium monofluoride 87SrF T. Le, H. Wang, and T. C. Steimle, Phys. Rev. A, 80, 062513 (2009) 33. The permanent electric dipole moment of praseodymium monoxide, PrO. H. Wang, C. Linton, T. Ma, T. C. Steimle, J. Phys. Chem. A, 113, 13372–13378 (2009) 34. Characterization of the X1A1 and A1B2 electronic states of titanium dioxide, TiO2. H. Wang, T. C. Steimle, C. Apetrei, J. P.Maier, Phys. Chem. Chem. Phys., 11, 2649 (2009) 35. The Zeeman Effect in the (0, 0) band of A7P-X7S+ transition of manganese monohydride, MnH. T. C. Steimle, H. Wang, J. J. Gengler, M. Stoll, G. Meijer, J. Chem. Phys. 129, 164318/1 (2008) 36. The permanent electric dipole moments and magnetic ge factors of neodymium monoxide. C. Linton, T. Ma, H. Wang, T. C. Steimle, J. Chem. Phys. 129, 124311/1 (2008) 37. Permanent electric dipole moment of molybdenum carbide. H. Wang, W. L. Virgo, J. Chen, T. C. Steimle, J. Chem. Phys. 127, 124302/1 (2007) 38. Molecular beam optical Stark study of the [18.1]2P1/2-X4S-1/2 band system of rhodium monosulfide. T. Ma, H. Wang, T. C. Steimle, J. Chem. Phys., 127, 124311/1 (2007) 39. Molecular beam optical Stark Study of rhodium mononitride. T. Ma, J. Gengler, Z. Wang, H. Wang, T. C.Steimle, J. Chem. Phys., 126, 244312/1 (2007) 40. Time-resolved kinetic studies on quenching of C2 (d3Pg) by alkanes and substituted methane molecules. H. Wang, Z. Zhu, S. Zhang, L. Pei, Y. Chen, Chem. Phys. Lett., 407, 217-221 (2005) 41. Mechanism and kinetics of CH3 + NO reaction. X. Yang, H. Wang, D. Zhao, Y. Chen, C. Chen, Chinese Journal of Chemical Physics, 18, 479 (2005). 42. The Kinetics of the Reactions of C2 (a3Pu) with Alcohols. C. Huang, Z. Zhu, H. Wang, L. Pei, Y. Chen, J. Phys. Chem. A, 109, 3921 (2005) 43. Time-resolved kinetic studies on quenching of HCCl (Ã1A(040)) by alkane and alcohol molecules. X. Yang, Y. Liu, H. Wang, Y. Chen, C. Chen, Chem. Phys. Lett. 406, 345 (2005) Conference reports and posters: 10/26/2013-10/27/2013 第三届全国原子分子光学物理青年科学家论坛·(上海)"金属氢化物光谱的研究"(H. Wang) 07/19/2009~07/24/2009, Electronic Spectroscopy & Dynamics 2009 Gordon Research Conferences—electronic Spectroscopy & Dynamics (ColbyCollege, Waterville, ME) 06/22/2009~06/26/2009, The 64thInternational Symposium on Molecular Spectroscopy (Columbus, Ohio, 01/28/2009~01/30/2009,The 56th Annual Western Spectroscopy Association Conference (Pacific Grove, CA, USA):(1)“A Systematic Study of the Bonding in the Lanthanide Monoxides” (H. Wang, C. Linton and T. C. Steimle) (2) “Optical Stark Spectroscopy of 3d-transition metal monohydrides” (X. Zhuang, J. Chen, H. Wang and T. C. Steimle) 06/16/2008~06/20/2008, The 63rdInternational Symposium on Molecular Spectroscopy(Columbus, Ohio, 02/06/2008~02/08/2008,The 55th Annual Western Spectroscopy Association Conference (Pacific Grove, CA, 09/03/2007~09/07/2007 The 20th Colloquium on High Resolution Molecular Spectroscopy(Dijon, France) “Measurement of the Electric Dipole Moment and Magnetic ge-Factor in Neodymium Monoxide” (C. C. Linton, T. Ma, H. Wang and T. C. Steimle) 8/12/2007~08/17/2007, The 29th International Symposium on Free Radical (Big Sky, Montana, 06/18/2007~06/22/2007,The 62ndOSU International Symposium on Molecular Spectroscopy Meeting (Columbus, Ohio, USA):(1) Molecular Beam Optical Stark Study of Rhodium Mononitride, RhN” (T. Ma, J. J. Gengler, H. Wang and T. C. Steimle)(2) “Measurements of the Electric Dipole Moment and Magnetic g-Factor in Neodymium Monoxide, NdO” (C. C. Linton, T. Ma, H. Wang and T. C. Steimle) 1/31/2007~02/02/2007, The 54th Annual Western Spectroscopy Association Conference (Pacific Grove, CA, Honor |