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Citation(s) in
RCA
12
(from Reference Citation Analysis)
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For:
Wu G
, Ding X.
The SU(3) algebraic vibrational dynamics of inter-mode couplings: a case study of H2O, CH2Br2 and CD2Br2.
Chem Phys Lett
1996;
262
:421-30. [DOI:
10.1016/0009-2614(96)01089-5
]
[
Citation(s) in
RCA
: 15
]
[
Impact Index Per Article: 0.5
]
[
Reference Citation Analysis
]
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[Indexed: 11/30/2022]
Number
Cited by Other Article(s)
1
Shu-Ching O
, Guo-Zhen W. Intramolecular vibrational dynamical barrier due to extremely irrational couplings.
ACTA ACUST UNITED AC
2007. [DOI:
10.1088/1009-1963/16/10/022
]
[
Citation(s) in
RCA
: 1
]
[
Impact Index Per Article: 0.1
]
[
Reference Citation Analysis
]
[
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[Indexed: 11/11/2022]
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2
Wang H
, Wang P, Wu G. Dixon dip in the highly excited vibrational levels sharing a common approximate quantum number and its destruction under multiple resonances.
Chem Phys Lett
2004. [DOI:
10.1016/j.cplett.2004.09.106
]
[
Citation(s) in
RCA
: 3
]
[
Impact Index Per Article: 0.2
]
[
Reference Citation Analysis
]
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[Indexed: 10/26/2022]
Abstract
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3
Coset potential approach to the vibrational dissociation: the case study of DCN and HCN.
Chem Phys
2003. [DOI:
10.1016/s0301-0104(03)00123-x
]
[
Citation(s) in
RCA
: 2
]
[
Impact Index Per Article: 0.1
]
[
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[Indexed: 11/23/2022]
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4
Wang P
, Wu G. Formal quantum numbers as retrieved by the diabatic correlation and their classical interpretation for the highly excited vibrational eigenstates.
Chem Phys Lett
2003. [DOI:
10.1016/s0009-2614(03)00238-0
]
[
Citation(s) in
RCA
: 8
]
[
Impact Index Per Article: 0.4
]
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[Indexed: 11/28/2022]
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5
Zheng D
, Wang P, Wu G. The H-function for the intra-molecular vibrational energy redistribution as an algebraic approach: resonances in H2O and DCN.
Chem Phys Lett
2002. [DOI:
10.1016/s0009-2614(01)01420-8
]
[
Citation(s) in
RCA
: 1
]
[
Impact Index Per Article: 0.0
]
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[Indexed: 11/26/2022]
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6
Yu J
, Wu G. The Lyapunov analysis of the highly excited bend motion of acetylene.
Chem Phys Lett
2001. [DOI:
10.1016/s0009-2614(01)00728-x
]
[
Citation(s) in
RCA
: 4
]
[
Impact Index Per Article: 0.2
]
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[Indexed: 11/28/2022]
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7
Action localization and resonance of highly excited vibrational triatomic system.
Chem Phys Lett
2000. [DOI:
10.1016/s0009-2614(00)00052-x
]
[
Citation(s) in
RCA
: 9
]
[
Impact Index Per Article: 0.4
]
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[Indexed: 11/23/2022]
Abstract
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8
Ji Z
, Wu G. Classification of the highly excited vibrational eigenstates by the nominal quantum numbers retrieved from the zero-order states: the diabatic correlation technique.
Chem Phys Lett
1999. [DOI:
10.1016/s0009-2614(99)00863-5
]
[
Citation(s) in
RCA
: 7
]
[
Impact Index Per Article: 0.3
]
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[Indexed: 10/16/2022]
Abstract
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9
Multifractal analysis for the eigencoefficients of the eigenstates of highly excited vibration.
Chem Phys Lett
1999. [DOI:
10.1016/s0009-2614(99)00028-7
]
[
Citation(s) in
RCA
: 5
]
[
Impact Index Per Article: 0.2
]
[
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[Indexed: 11/22/2022]
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10
Classification and assignment of eigenstates of highly excited vibrational manifolds via broken constants of motion.
Chem Phys Lett
1998. [DOI:
10.1016/s0009-2614(98)00739-8
]
[
Citation(s) in
RCA
: 22
]
[
Impact Index Per Article: 0.8
]
[
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[Indexed: 11/19/2022]
Abstract
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11
Global topological approach to highly excited vibration: a case study of H2O, CH2Br2 and CD2Br2.
Chem Phys Lett
1997. [DOI:
10.1016/s0009-2614(97)00401-6
]
[
Citation(s) in
RCA
: 10
]
[
Impact Index Per Article: 0.4
]
[
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[Indexed: 11/18/2022]
Abstract
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12
Wu G
. Statistical interpretation for the local and normal characters of the SU(3) dynamical system and the symmetry breaking of the equivalent modes.
Chem Phys Lett
1997. [DOI:
10.1016/s0009-2614(96)01485-6
]
[
Citation(s) in
RCA
: 2
]
[
Impact Index Per Article: 0.1
]
[
Reference Citation Analysis
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[Indexed: 10/27/2022]
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