F. Huang
Tsinghua University
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Publication
Featured researches published by F. Huang.
Review of Scientific Instruments | 2005
X.G. Ren; C.G. Ning; J.K. Deng; Shulian Zhang; G.L. Su; F. Huang; G. Q. Li
A high sensitivity and high resolution (e, 2e) electron momentum spectrometer with simultaneous detection in energy and momentum are constructed. The design and performance of the spectrometer are reported. The orbital electron density distributions are obtained accurately and rapidly by using this spectrometer equipped with a double toroidal analyzer. The experimental results on argon and helium exhibit the significant improvements in coincidence count rates, resolution, sensitivity and obtainment of a wide range of adjustable experimental impact energies, which are crucial for further electron momentum spectroscopy studying electronic structure and electron correlation in complex systems.
Journal of Chemical Physics | 2005
G.L. Su; C.G. Ning; Shulian Zhang; X.G. Ren; Hongyi Zhou; Bo Li; F. Huang; G. Q. Li; J.K. Deng
The electron binding energy spectra and momentum profiles of the valence orbitals of difluoromethane, also known as HFC32 (HFC-hydrofluorocarbon) (CH(2)F(2)), have been studied by using a high resolution (e,2e) electron momentum spectrometer, at an impact energy of 1200 eV plus the binding energy, and by using symmetric noncoplanar kinematics. The experimental momentum profiles of the outer valence orbitals and 4a(1) inner valence orbital are compared with the theoretical momentum distributions calculated using Hartree-Fock and density functional theory (DFT) methods with various basis sets. In general, the shapes of the experimental momentum distributions are well described by both the Hartree-Fock and DFT calculations when large and diffuse basis sets are used. However, the result also shows that it is hard to choose the different calculations for some orbitals, including the methods and the size of the basis sets employed. The pole strength of the ionization peak from the 4a(1) inner valence orbital is estimated.
Journal of Chemical Physics | 2005
C.G. Ning; X.G. Ren; J.K. Deng; Shulian Zhang; G.L. Su; F. Huang; G.Q. Li
The binding energy spectra and momentum distributions of all valence orbitals of propene were studied by electron momentum spectroscopy (EMS) as well as Hartree-Fock and density functional theoretical calculations. The experiment was carried out at impact energies of 1200 eV and 600 eV on the state-of-the-art EMS spectrometer developed at Tsinghua University recently. The experimental momentum profiles of the valence orbitals were obtained and compared with the various theoretical calculations. Moreover, the experiment with a new analysis method presents a strong support for the correct ordering of the orbital 8a and 1a, i.e., 9a < 8a < 1a < 7a.
Physical Review Letters | 2005
X.G. Ren; C.G. Ning; J.K. Deng; Shulian Zhang; G.L. Su; F. Huang; G.Q. Li
Chemical Physics Letters | 2000
G.L. Su; C.G. Ning; S.F. Zhang; X.G. Ren; Hui Zhou; Bo Li; F. Huang; G. Q. Li; J.K. Deng; Yilei Wang
Chemical Physics Letters | 2005
X.G. Ren; C.G. Ning; J.K. Deng; Shulian Zhang; G.L. Su; F. Huang; G. Q. Li
Chemical Physics Letters | 2005
C.G. Ning; X.G. Ren; J.K. Deng; Shulian Zhang; G.L. Su; Hongyi Zhou; Bo Li; F. Huang; G.Q. Li
Chemical Physics Letters | 2005
Shulian Zhang; X.G. Ren; G.L. Su; Chuangang Ning; Hongyi Zhou; Bo Li; F. Huang; G. Q. Li; J. K. Deng
Chemical Physics Letters | 2005
C.G. Ning; X.G. Ren; J.K. Deng; Shulian Zhang; G.L. Su; F. Huang; G.Q. Li
Physics Letters A | 2004
X.G. Ren; G.L. Su; S.F. Zhang; Chuangang Ning; Hongyi Zhou; Bo Li; F. Huang; G. Q. Li; J. K. Deng