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华东师范大学精密光谱科学与技术国家重点实验室导师教师师资介绍简介-汪海玲

本站小编 Free考研考试/2021-01-16

汪海玲
精密光谱科学与技术国家重点实验室??????


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个人资料
部门: 精密光谱科学与技术国家重点实验室
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学位:
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电子邮箱: hlwang@phy.ecnu.edu.cn
办公地址: 理科大楼A-1310B
通讯地址: 华东师范大学精密光谱科学与技术国家重点实验室

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社会兼职


研究方向
原子/分子/离子光谱及其应用;冷分子反应动力学


开授课程


科研项目


学术成果






Hyperfine structure of atomic fluorine (F I)
X. Huo, L. Deng*, L. Windholz , X. Mu, H. Wang *,Journal of Quantitative Spectroscopy and Radiative Transfer2018, 205, 1-6(2区,IF=2.419)

The third topic: Laser deceleration, cooling and MOT technology of chemically stabilizedMolecules
Y. Xia, H. Wang, L. Xu, J. Yin, Phys., 1, 24-32, ( 2018)

Re-investigation of the (3, 0) band in the b4?-- a4? 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)

Absorption spectra and isotope shifts of the (2, 0), (3, 1), and (8, 5) bands of the A2Πu–X2Σg+ system of 15N2+ in the near infrared
J. Ye, H. Wang *, L. Deng*, Chin. Phys. B. 26(10): 103102 (2017).(IF=1.2)

Spectra of I2+ for possible measurement of a and m constants
X. Mu, Ch. Li, L. Deng*, H. Wang*, Acta Phys. Sin. 66( 23), 233301(2017)

Theoretical Calculation of Hyperfine Structures and g-factors of Ground State of Mercuric Fluoride Molecule
M. Hao, H. Wang*, J. Yin, Acta Optica Sinica 37(09), ** (2017)

Hyperfine structure constants of atomic bromine (BrI)
X. Ni, L. Deng*, H. Wang *, Journal of Quantitative Spectroscopy & Radiative Transfer 196,165–168 (2017)(IF=2.4)

A high-resolution photoionization and photoelectron study of Co atom using a vacuum ultraviolet laser,
Huang Huang, Hailing Wang, ZhihongLuo, Xiaoyu Shi, Yih-Chung Chang, and C. Y. Ng ,
Astrophysical Journal. (accepted )


Isotope shifts of Nitrogen around 800nm
J. Bai, H. Wang,X. Ni, and L. Deng
Chinese Journal of Chemical Physics,29( 5), 527, 2016

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, and J. Yin
Scientific Report, 6, 26776 (2016)


Franck-Condon Factors and Band Origins for MgH in the A2Pi-X2Sigma+ System,
X. Cheng, J. Bai, J. Yin, H. Wang
Chinese Journal of Chemical Physics, 28(3), 253-256 (2015)

Dependence of Q-Branch Intensity of Pendular State Molecules on Electric Field and Molecular Orientation and their Applications
F. Miao, M. Deng, H. Wang*, J. Yin, ACTA OPTICA SINICA, 10, 297-303, (2015)

The electric dipole moment of magnesium deuteride, MgD
T. C. Steimle, R. Zhang,H. Wang,J. Chem. Phys.140, 224308 (2014)
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)
Electrostatic surface trap for cold polar molecules on a chip
Q. Wang, S. Li, S. Hou, Y. Xia, H. Wang,J. Yin, Chinese Physics B, 23(1), 2014/1
The Zeeman effect in the [17.6]7.5–X18.5 transition of holmium monoxide
C. Linton, T. C. Steimle, H. Wang,J. Mole.Spec.275, 15–20 (2012)
A vacuum-ultraviolet laser pulsed field ionization-photoelectron study of sulfur monoxide (SO) and its cation (SO+)
C.-S. Lam, H. Wang, Y. Xu, K.-C. Lau, and C. Y. Ng,J. Chem. Phys.134, 144304 (2011)
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.-S. Lam, H. Wang,J. Zhou, and C. Y. Ng,J. Chem. Phys.135, 224304 (2011)

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).
Hyperfine structure and Zeeman tuning of theA2P?X2S+(0,0) band system of the odd isotopologue of strontium monofluoride87SrF
A.T. Le, H. Wang, and T. C. Steimle,Phys. Rev. A80, 062513 (2009)
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)
Characterization of the X1A1and A1B2electronic states of titanium dioxide, TiO2.
H. Wang, T. C. Steimle, C. Apetrei, J. P. Maier,Phys. Chem. Chem.Phys.11, 2649 (2009)
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)
The permanent electric dipole moments and magnetic gefactors of neodymium monoxide.
C. Linton, T. Ma,; H. Wang, T. C. Steimle,J. Chem.Phys.129, 124310 (2008)
Permanent electric dipole moment of molybdenum carbide.
H. Wang, W. L. Virgo, J. Chen, T. C. Steimle,J. Chem.Phys.127, 124302/1 (2007)
Molecular beam optical Stark study of the [18.1]2P1/2-X4S-1/2band system of rhodium monosulfide.
T. Ma, H. Wang, T. C. Steimle,J. Chem. Phys.127, 124311/1 (2007)
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)
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)
Mechanism and kinetics of CH3+ NO reaction.
X. Yang, H. Wang, D. Zhao, Y. Chen, C. Chen,,Huaxue Wuli Xuebao18, 479 (2005)
The Kinetics of the Reactions of C2(a3Pu) with Alcohols.
C. Huang, Z. Zhu, H. Wang, L. Pei, Y. Chen,J. Phys. Chem.A109, 3921 (2005)
Time-resolved kinetic studies on quenching of HCCl (?1A"(040)) by alkane and alcohol molecules.
X. Yang, Y. Liu, H. Wang, Y. Chen, C. Chen,Chem. Phys.Lett.406, 345 (2005)



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