Results for Point Group C2



Characters of representations for molecular motions
Motion E C2
Cartesian 3N 36 0
Translation (x,y,z) 3 -1
Rotation (Rx,Ry,Rz) 3 -1
Vibration 30 2


Decomposition to irreducible representations
Motion A B Total
Cartesian 3N 18 18 36
Translation (x,y,z) 1 2 3
Rotation (Rx,Ry,Rz) 1 2 3
Vibration 16 14 30



Molecular parameter
Number of Atoms (N) 12
Number of internal coordinates 30
Number of independant internal coordinates 16
Number of vibrational modes 30


Force field analysis


Allowed / forbidden vibronational transitions
Operator A B Total
Linear (IR) 16 14 30 / 0
Quadratic (Raman) 16 14 30 / 0
IR + Raman 16 14 30 / 0


Characters of force fields
(Symmetric powers of vibration representation)
Force field E C2
linear 30 2
quadratic 465 17
cubic 4.960 32
quartic 40.920 152
quintic 278.256 272
sextic 1.623.160 952


Decomposition to irreducible representations
Column with number of nonvanshing force constants highlighted
Force field A B
linear 16 14
quadratic 241 224
cubic 2.496 2.464
quartic 20.536 20.384
quintic 139.264 138.992
sextic 812.056 811.104


Further Reading



Contributions to nonvanishing force field constants


pos(X) : Position of irreducible representation (irrep) X in character table of C2

Subtotal: <Number of nonvanishing force constants in subsection> / <number of nonzero irrep combinations in subsection> / <number of irrep combinations in subsection>
Total: <Number of nonvanishing force constants in force field> / <number of nonzero irrep combinations in force field> / <number of irrep combinations in force field>


Contributions to nonvanishing quadratic force field constants
Irrep combinations (i,i) with indices: pos(A) ≤ i ≤ pos(B)
..136. AA...105. BB.
Subtotal: 241 / 2 / 2
Irrep combinations (i,j) with indices: pos(A) ≤ i ≤ j ≤ pos(B)
Subtotal: 0 / 0 / 1
Total: 241 / 2 / 3


Contributions to nonvanishing cubic force field constants
Irrep combinations (i,i,i) with indices: pos(A) ≤ i ≤ pos(B)
..816. AAA.
Subtotal: 816 / 1 / 2
Irrep combinations (i,i,j) (i,j,j) with indices: pos(A) ≤ i ≤ j ≤ pos(B)
..1.680. ABB.
Subtotal: 1.680 / 1 / 2
Irrep combinations (i,j,k) with indices: pos(A) ≤ i ≤ j ≤ k ≤ pos(B)
Subtotal: 0 / 0 / 0
Total: 2.496 / 2 / 4


Contributions to nonvanishing quartic force field constants
Irrep combinations (i,i,i,i) with indices: pos(A) ≤ i ≤ pos(B)
..3.876. AAAA...2.380. BBBB.
Subtotal: 6.256 / 2 / 2
Irrep combinations (i,i,i,j) (i,j,j,j) with indices: pos(A) ≤ i ≤ j ≤ pos(B)
Subtotal: 0 / 0 / 2
Irrep combinations (i,i,j,j) with indices: pos(A) ≤ i ≤ j ≤ pos(B)
..14.280. AABB.
Subtotal: 14.280 / 1 / 1
Irrep combinations (i,i,j,k) (i,j,j,k) (i,j,k,k) with indices: pos(A) ≤ i ≤ j ≤ k ≤ pos(B)
Subtotal: 0 / 0 / 0
Irrep combinations (i,j,k,l) with indices: pos(A) ≤ i ≤ j ≤ k ≤ l ≤ pos(B)
Subtotal: 0 / 0 / 0
Total: 20.536 / 3 / 5


Calculate contributions to

A B
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Last update November, 13th 2023 by A. Gelessus, Impressum, Datenschutzerklärung/DataPrivacyStatement