32. W. Holzer, Y. Le Duff, The depolarization ratio of the Raman bands of the vibration of
diatomic molecules. in Adv. Raman Specrosc, vol. 1 (Heyden, London, 1973), pp. 109–112
33. C.M. Penney, L.M. Goldman, M. Lapp, Raman scattering cross sections. Nat. Phys. Sci. 235
(7), 110–112 (1972)
34. T. Yoshino, H. Bernstein, Intensity in the Raman effect. 6. The photoelectrically recorded
Raman spectra of some gases. J. Molec Spectrosc. 2(3), 213–240 (1958)
35. W. Knippers, K. Van Helvoort, S. Stolte, Vibrational overtones of the homonuclear
diatomics (N 2 , O 2 , D 2 ) observed by the spontaneous Raman effect. Chem. Phys. Lett. 121
(4,5), 279–286 (1985)
36. C.M. Penney, R.L.S. Peters, M. Lapp, Absolute rotational Raman cross sections for N 2 , O 2 ,
and CO 2 . J. Opt. Soc. Am. 64(5), 712–716 (1974)
37. W.R. Fenner, H.A. Hyatt, J.M. Kellam, S.P.S. Porto, Raman cross section of some simple
gases. J. Opt. Soc. Am. 63(1), 73–77 (1973)
38. H.A. Hyatt, J.M. Cherlow, W.R. Fenner, S.P.S. Porto, Cross section for the Raman effect in
molecular nitrogen gas. J. Opt. Soc. Am. 63(12), 1604–1606 (1973)
39. A.D. Buckingham, A. Szabo, Determination of derivatives of the polarizability anisotropy in
a diatomic molecule from relative Raman intensities. J. Raman Spectrosc. 7(1), 46–48
(1978)
40. U. Hohm, Experimental static dipole-dipole polarizabilities of molecules. J. Mol. Struct.
1054–1055, 282–292 (2013)
41. G. Maroulis, A systematic study of basis set, electron correlation, and geometry effects on
the electric multipole moments, polarizability, and hyperpolarizability of HCl. J. Chem.
Phys. 108(13), 5432–5448 (1998)
42. A.D. Buckingham, The polarizability of a pair of interacting atoms. Trans. Faraday Soc. 52,
1035–1041 (1956)
43. A.D. Buckingham, K.L. Klarke, Long-range effects of molecular interactions on the
polarizability of atoms. Chem. Phys. Lett. 57(3), 321–325 (1978)
44. K.L.C. Hunt, B.A. Zilles, J.E. Bohr, Effect of van der Waals interactions on the polarizability of
atoms, oscillators, and dipolar rotors at long range. J. Chem. Phys. 75(6), 3079–3086 (1981)
45. K.L.C. Hunt, Y.Q. Liang, S. Sethuraman, Transient, collision-induced changes in
polarizability for atoms interacting with linear, centrosymmetric molecules at long range.
J. Chem. Phys. 89(12), 7126–7138 (1988)
46. D.M. Bishop, J. Pipin, Calculation of the polarizability and hyperpolarizability tensors, at
imaginary frequency, for H, He, and H 2 and the dispersion polarizability coefficients for
interactions between them. J. Chem. Phys. 97(1), 3375–3381 (1992)
47. P.W. Fowler, K.L.C. Hunt, H.M. Kelly, A.J. Sadley, Multipole polarizabilities of the helium
atom and collision-induced polarizabilities of pairs containing He or H atoms. J. Chem.
Phys. 100(4), 2932–2935 (1994)
48. X. Li, K.L.C. Hunt, Transient changes in polarizability for centrosymmetric linear molecules
interacting at long range: theory and numerical results for H 2 -H 2 , H 2 -N 2 , and N 2 -N 2 .
J. Chem. Phys. 100(11), 7875–7889 (1994)
49. C. Domene, P.W. Fowler, P. Jemmer, P.A. Madden, Dipole-induced-dipole polarizabilities
of symmetric clusters. Mol. Phys. 98(18), 1391–1407 (2000)
50. M.A. Buldakov, B.V. Korolev, I.I. Matrosov, V.N. Cherepanov, Polarizability of two
interacting molecules N 2 and O 2 . Opt. Spectrosc. 94, 185–190 (2003)
51. M.A. Buldakov, V.N. Cherepanov, N.S. Nagornova, Polarizability of the van der Waals
complexes N 2 …Y and O 2 …Y (Y = He, Ne, Ar, Kr, Xe). Part 1. Stable configurations,
Atmos. Ocean. Opt. 18(1–2), 12–17 (2005)
52. M.A. Buldakov, V.N. Cherepanov, N.S. Nagornova, Polarizability of the van der Waals
complexes N 2 …Y and O 2 …Y (Y = He, Ne, Ar, Kr, Xe). Part 2. Unstable configurations,
Atmos. Ocean. Opt. 18(1–2), 18–22 (2005)
53. M.A. Buldakov, V.N. Cherepanov, N.S. Nagornova, Polarizability of the van der Waals
complexes N 2 …Y and O 2 …Y (Y = He, Ne, Ar, Kr, Xe). Part 3. Frequency dependence,
Atmos. Ocean. Opt. 19(1), 33–37 (2006)
78
4 Interaction-induced Polarizability
diatomic molecules. in Adv. Raman Specrosc, vol. 1 (Heyden, London, 1973), pp. 109–112
33. C.M. Penney, L.M. Goldman, M. Lapp, Raman scattering cross sections. Nat. Phys. Sci. 235
(7), 110–112 (1972)
34. T. Yoshino, H. Bernstein, Intensity in the Raman effect. 6. The photoelectrically recorded
Raman spectra of some gases. J. Molec Spectrosc. 2(3), 213–240 (1958)
35. W. Knippers, K. Van Helvoort, S. Stolte, Vibrational overtones of the homonuclear
diatomics (N 2 , O 2 , D 2 ) observed by the spontaneous Raman effect. Chem. Phys. Lett. 121
(4,5), 279–286 (1985)
36. C.M. Penney, R.L.S. Peters, M. Lapp, Absolute rotational Raman cross sections for N 2 , O 2 ,
and CO 2 . J. Opt. Soc. Am. 64(5), 712–716 (1974)
37. W.R. Fenner, H.A. Hyatt, J.M. Kellam, S.P.S. Porto, Raman cross section of some simple
gases. J. Opt. Soc. Am. 63(1), 73–77 (1973)
38. H.A. Hyatt, J.M. Cherlow, W.R. Fenner, S.P.S. Porto, Cross section for the Raman effect in
molecular nitrogen gas. J. Opt. Soc. Am. 63(12), 1604–1606 (1973)
39. A.D. Buckingham, A. Szabo, Determination of derivatives of the polarizability anisotropy in
a diatomic molecule from relative Raman intensities. J. Raman Spectrosc. 7(1), 46–48
(1978)
40. U. Hohm, Experimental static dipole-dipole polarizabilities of molecules. J. Mol. Struct.
1054–1055, 282–292 (2013)
41. G. Maroulis, A systematic study of basis set, electron correlation, and geometry effects on
the electric multipole moments, polarizability, and hyperpolarizability of HCl. J. Chem.
Phys. 108(13), 5432–5448 (1998)
42. A.D. Buckingham, The polarizability of a pair of interacting atoms. Trans. Faraday Soc. 52,
1035–1041 (1956)
43. A.D. Buckingham, K.L. Klarke, Long-range effects of molecular interactions on the
polarizability of atoms. Chem. Phys. Lett. 57(3), 321–325 (1978)
44. K.L.C. Hunt, B.A. Zilles, J.E. Bohr, Effect of van der Waals interactions on the polarizability of
atoms, oscillators, and dipolar rotors at long range. J. Chem. Phys. 75(6), 3079–3086 (1981)
45. K.L.C. Hunt, Y.Q. Liang, S. Sethuraman, Transient, collision-induced changes in
polarizability for atoms interacting with linear, centrosymmetric molecules at long range.
J. Chem. Phys. 89(12), 7126–7138 (1988)
46. D.M. Bishop, J. Pipin, Calculation of the polarizability and hyperpolarizability tensors, at
imaginary frequency, for H, He, and H 2 and the dispersion polarizability coefficients for
interactions between them. J. Chem. Phys. 97(1), 3375–3381 (1992)
47. P.W. Fowler, K.L.C. Hunt, H.M. Kelly, A.J. Sadley, Multipole polarizabilities of the helium
atom and collision-induced polarizabilities of pairs containing He or H atoms. J. Chem.
Phys. 100(4), 2932–2935 (1994)
48. X. Li, K.L.C. Hunt, Transient changes in polarizability for centrosymmetric linear molecules
interacting at long range: theory and numerical results for H 2 -H 2 , H 2 -N 2 , and N 2 -N 2 .
J. Chem. Phys. 100(11), 7875–7889 (1994)
49. C. Domene, P.W. Fowler, P. Jemmer, P.A. Madden, Dipole-induced-dipole polarizabilities
of symmetric clusters. Mol. Phys. 98(18), 1391–1407 (2000)
50. M.A. Buldakov, B.V. Korolev, I.I. Matrosov, V.N. Cherepanov, Polarizability of two
interacting molecules N 2 and O 2 . Opt. Spectrosc. 94, 185–190 (2003)
51. M.A. Buldakov, V.N. Cherepanov, N.S. Nagornova, Polarizability of the van der Waals
complexes N 2 …Y and O 2 …Y (Y = He, Ne, Ar, Kr, Xe). Part 1. Stable configurations,
Atmos. Ocean. Opt. 18(1–2), 12–17 (2005)
52. M.A. Buldakov, V.N. Cherepanov, N.S. Nagornova, Polarizability of the van der Waals
complexes N 2 …Y and O 2 …Y (Y = He, Ne, Ar, Kr, Xe). Part 2. Unstable configurations,
Atmos. Ocean. Opt. 18(1–2), 18–22 (2005)
53. M.A. Buldakov, V.N. Cherepanov, N.S. Nagornova, Polarizability of the van der Waals
complexes N 2 …Y and O 2 …Y (Y = He, Ne, Ar, Kr, Xe). Part 3. Frequency dependence,
Atmos. Ocean. Opt. 19(1), 33–37 (2006)
78
4 Interaction-induced Polarizability
