Bibliography
79
coordinates R. When is far off resonant from the electronic excited state (i.e.
¯
hh E e
n − E e
g ), the dispersion of α can be neglected and α pq ((, R) is further
approximated with the static polarizability, α pq ((, R) ∼ = α pq (( = 0, R).
Bibliography
1. Boyd RW (2003) Nonlinear optics. Academic, Amsterdam
2. Dirac PAM (1927) The quantum theory of dispersion. Prof R Soc Lond A114:710–728
3. Goldstein H, Poole C, Safko J (2001) Classical mechanics, 3rd edn. Pearson, San Francisco
4. Hayashi M, Lin SH, Raschke MB, Shen YR (2002) A molecular theory for doubly resonant
IR-UV-vis sum-frequency generation. J Phys Chem A 106:2271–2282
5. Haynes WM (ed) (2012) CRC handbook of chemistry and physics, 93rd edn. CRC Press, Boca
Raton
6. Ishiyama T, Morita A (2006) Intermolecular correlation effect in sum frequency generation
spectroscopy of electrolyte aqueous solution. Chem Phys Lett 431:78–82
7. Ishiyama T, Morita A (2007) Molecular dynamics study of gas-liquid aqueous sodium halide
interfaces II. analysis of vibrational sum frequency generation spectra. J Phys Chem C
111:738–748
8. Kramers HA, Heisenberg W (1925) Üder die streuung von strahlung durch atome. Z Phys
31:681–708
9. Lambert AG, Davies PB, Neivandt DJ (2005) Implementing the theory of sum frequency
generation vibrational spectroscopy: a tutorial review. Appl Spec Rev 40:103–145
10. Long DA (1977) Raman spectroscopy. McGraw-Hill, New York
11. Long DA (2002) The raman effect. Wiley, New York
12. Loudon R (2000) The quantum theory of light, 3rd edn. Oxford University Press, Oxford
13. Mukamel S (1995) Principles of nonlinear optical spectroscopy. Oxford University Press, New
York
14. Placzek G (1934) Rayleigh-streuung und Raman-effekt. Handbuch der Radiologie 6:205–374
15. Shen YR (1984) The principle of nonlinear optics. Wiley, New York
16. Weiss PA, Silverstein DW, Jensen L (2014) Non-condon effects on the doubly resonant sum
frequency generation of rhodamine 6G. J Phys Chem Lett 5:329–335
17. Zale´ sny R, Bartkowiak W, Champagne B (2003) Ab initio calculations of doubly resonant
sum-frequency generation second-order polarizabilities of LiH. Chem Phys Lett 380:549–555
18. Zheng R-H, Wei W-M, Jing Y-Y, Liu H, Shi Q (2013) Theoretical study of doubly resonant
sum-frequency vibrational spectroscopy for 1,1-bi-2-naphthol molecules on water surface. J
Phys Chem C 117:11117–11123
79
coordinates R. When is far off resonant from the electronic excited state (i.e.
¯
hh E e
n − E e
g ), the dispersion of α can be neglected and α pq ((, R) is further
approximated with the static polarizability, α pq ((, R) ∼ = α pq (( = 0, R).
Bibliography
1. Boyd RW (2003) Nonlinear optics. Academic, Amsterdam
2. Dirac PAM (1927) The quantum theory of dispersion. Prof R Soc Lond A114:710–728
3. Goldstein H, Poole C, Safko J (2001) Classical mechanics, 3rd edn. Pearson, San Francisco
4. Hayashi M, Lin SH, Raschke MB, Shen YR (2002) A molecular theory for doubly resonant
IR-UV-vis sum-frequency generation. J Phys Chem A 106:2271–2282
5. Haynes WM (ed) (2012) CRC handbook of chemistry and physics, 93rd edn. CRC Press, Boca
Raton
6. Ishiyama T, Morita A (2006) Intermolecular correlation effect in sum frequency generation
spectroscopy of electrolyte aqueous solution. Chem Phys Lett 431:78–82
7. Ishiyama T, Morita A (2007) Molecular dynamics study of gas-liquid aqueous sodium halide
interfaces II. analysis of vibrational sum frequency generation spectra. J Phys Chem C
111:738–748
8. Kramers HA, Heisenberg W (1925) Üder die streuung von strahlung durch atome. Z Phys
31:681–708
9. Lambert AG, Davies PB, Neivandt DJ (2005) Implementing the theory of sum frequency
generation vibrational spectroscopy: a tutorial review. Appl Spec Rev 40:103–145
10. Long DA (1977) Raman spectroscopy. McGraw-Hill, New York
11. Long DA (2002) The raman effect. Wiley, New York
12. Loudon R (2000) The quantum theory of light, 3rd edn. Oxford University Press, Oxford
13. Mukamel S (1995) Principles of nonlinear optical spectroscopy. Oxford University Press, New
York
14. Placzek G (1934) Rayleigh-streuung und Raman-effekt. Handbuch der Radiologie 6:205–374
15. Shen YR (1984) The principle of nonlinear optics. Wiley, New York
16. Weiss PA, Silverstein DW, Jensen L (2014) Non-condon effects on the doubly resonant sum
frequency generation of rhodamine 6G. J Phys Chem Lett 5:329–335
17. Zale´ sny R, Bartkowiak W, Champagne B (2003) Ab initio calculations of doubly resonant
sum-frequency generation second-order polarizabilities of LiH. Chem Phys Lett 380:549–555
18. Zheng R-H, Wei W-M, Jing Y-Y, Liu H, Shi Q (2013) Theoretical study of doubly resonant
sum-frequency vibrational spectroscopy for 1,1-bi-2-naphthol molecules on water surface. J
Phys Chem C 117:11117–11123
