1 The Potential Energy Surface in Molecular Quantum Mechanics
39
10. Navarro L (1998) Arch Hist Exact Sci 53:147–180
11. Duhem P (1911) Traité d’énergétique, 2 vols. Gauthier-Villars, Paris
12. Pelzer H, Wigner EP (1932) Z Phys Chem Abt B 15:445–471
13. Wigner EP (1938) Trans Faraday Soc 34:29–41
14. Laidler KJ, King MC (1983) J Phys Chem 87:2657–2664
15. Waalkens H, Schubert R, Wiggins S (2008) Nonlinearity 21:R1–R118
16. Earnshaw S (1842) Trans Camb Philos Soc 7:97–112
17. Bohr N (1922) The structure of the atom. Nobel Lecture, December 11. Available online as
http://www.nobelprize.org/nobel_prizes/physics/laureates/1922/Bohr-lecture.html
18. Bohr N (1913) Philos Mag 26:1–25
19. Schwarzschild K (1916) Sitzber Preuss Akad Wiss 1:548–561
20. Heurlinger T (1919) Z Phys 20:188–190
21. Born M (1925) Vorlesungen über Atommechanik. Springer, Berlin. The mechanics of the
atom. Translated by JW Fisher (1927). George Bell and Sons, London
22. Sommerfeld A (1919) Atombau und Spektrallinien. Verlag F Vieweg und Sohn, Braunschweig
23. Ehrenfest P (1916) Ann Phys 356:327–352
24. Bohr N (1918) Kgl Danske Vid Selskab 4:1–36
25. Bohr N (1923) Z Phys 13:117–165
26. Berry MV (1984) J Phys A, Math Gen 17:1225–1233
27. Gutzwiller M (1998) Rev Mod Phys 70:589–639
28. Percival IC (1973) J Phys B, Atom Mol Phys 6:L229–L232
29. Thirring W (1987) In: Kilmister CW (ed) Schrödinger, centenary celebrations of a polymath.
Cambridge University Press, Cambridge
30. Poincaré H (1899) Les méthodes nouvelles de la mécanique céleste. Gauthier-Villars, Paris
31. Einstein A (1917) Verh Dtsch Phys Ges 19:82–92
32. Pauli W (1922) Ann Phys 68:177–240
33. Nordheim L (1923) Z Phys 19:69–93
34. Kemble EC (1926) Molecular spectra of gases. Bull NRC 11(57):303–304
35. Kragh H (2012) Neils Bohr and the quantum atom: the Bohr model of atomic structure, 1913–
1925. Oxford University Press, Oxford, p 239
36. Born M, Heisenberg W (1924) Ann Phys 74:1–31
37. Eckart C (1935) Phys Rev 47:552–558
38. Born M, Oppenheimer JR (1927) Ann Phys 84:457–484
39. Heitler W, London F (1927) Z Phys 44:455–472
40. London F (1928) In: Quantentheorie und Chemie. Hirzel, Leipzig, p 59
41. London F (1928) In: Probleme der modernen Physik. Hirzel, Leipzig, p 104
42. Slater JC (1927) Proc Natl Acad Sci 13:423–430
43. Born M, Fock V (1928) Z Phys 51:165–180
44. Born M, Huang K (1954) Dynamical theory of crystal lattices. Clarendon, Oxford
45. Lathouwers L, van Leuven P (1982) Adv Chem Phys 49:115–189
46. An English language translation of the original paper can be found at www.ulb.ac.be/cpm/
people/scientists/bsutclif/main.html
47. Sutcliffe BT (1990) In: Maksic ZB (ed) Theoretical models of chemical bonding, part 1.
Springer, Berlin, pp 1–28
48. Pauling L, Wilson EB Jr. (1935) Introduction to quantum mechanics. McGraw-Hill, New York.
See especially Chap X, p 262
49. Born M (1951) Nachr. Akad. Wiss. Göttingen. Math-Phys. Klasse IIa. Math Phys Chem Abt,
S Art Nr 6:1–3
50. O’Malley TF (1971) Adv At Mol Phys 7:223–249
51. Hall GG (1987) Int J Quant Chem XXXI:383–391
52. Loss M, Miyao T, Spohn H (2007) J Funct Anal 243:353–393
53. Reed M, Simon B (1978) Analysis of operators. Methods of modern mathematical physics,
vol IV. Academic Press, New York
39
10. Navarro L (1998) Arch Hist Exact Sci 53:147–180
11. Duhem P (1911) Traité d’énergétique, 2 vols. Gauthier-Villars, Paris
12. Pelzer H, Wigner EP (1932) Z Phys Chem Abt B 15:445–471
13. Wigner EP (1938) Trans Faraday Soc 34:29–41
14. Laidler KJ, King MC (1983) J Phys Chem 87:2657–2664
15. Waalkens H, Schubert R, Wiggins S (2008) Nonlinearity 21:R1–R118
16. Earnshaw S (1842) Trans Camb Philos Soc 7:97–112
17. Bohr N (1922) The structure of the atom. Nobel Lecture, December 11. Available online as
http://www.nobelprize.org/nobel_prizes/physics/laureates/1922/Bohr-lecture.html
18. Bohr N (1913) Philos Mag 26:1–25
19. Schwarzschild K (1916) Sitzber Preuss Akad Wiss 1:548–561
20. Heurlinger T (1919) Z Phys 20:188–190
21. Born M (1925) Vorlesungen über Atommechanik. Springer, Berlin. The mechanics of the
atom. Translated by JW Fisher (1927). George Bell and Sons, London
22. Sommerfeld A (1919) Atombau und Spektrallinien. Verlag F Vieweg und Sohn, Braunschweig
23. Ehrenfest P (1916) Ann Phys 356:327–352
24. Bohr N (1918) Kgl Danske Vid Selskab 4:1–36
25. Bohr N (1923) Z Phys 13:117–165
26. Berry MV (1984) J Phys A, Math Gen 17:1225–1233
27. Gutzwiller M (1998) Rev Mod Phys 70:589–639
28. Percival IC (1973) J Phys B, Atom Mol Phys 6:L229–L232
29. Thirring W (1987) In: Kilmister CW (ed) Schrödinger, centenary celebrations of a polymath.
Cambridge University Press, Cambridge
30. Poincaré H (1899) Les méthodes nouvelles de la mécanique céleste. Gauthier-Villars, Paris
31. Einstein A (1917) Verh Dtsch Phys Ges 19:82–92
32. Pauli W (1922) Ann Phys 68:177–240
33. Nordheim L (1923) Z Phys 19:69–93
34. Kemble EC (1926) Molecular spectra of gases. Bull NRC 11(57):303–304
35. Kragh H (2012) Neils Bohr and the quantum atom: the Bohr model of atomic structure, 1913–
1925. Oxford University Press, Oxford, p 239
36. Born M, Heisenberg W (1924) Ann Phys 74:1–31
37. Eckart C (1935) Phys Rev 47:552–558
38. Born M, Oppenheimer JR (1927) Ann Phys 84:457–484
39. Heitler W, London F (1927) Z Phys 44:455–472
40. London F (1928) In: Quantentheorie und Chemie. Hirzel, Leipzig, p 59
41. London F (1928) In: Probleme der modernen Physik. Hirzel, Leipzig, p 104
42. Slater JC (1927) Proc Natl Acad Sci 13:423–430
43. Born M, Fock V (1928) Z Phys 51:165–180
44. Born M, Huang K (1954) Dynamical theory of crystal lattices. Clarendon, Oxford
45. Lathouwers L, van Leuven P (1982) Adv Chem Phys 49:115–189
46. An English language translation of the original paper can be found at www.ulb.ac.be/cpm/
people/scientists/bsutclif/main.html
47. Sutcliffe BT (1990) In: Maksic ZB (ed) Theoretical models of chemical bonding, part 1.
Springer, Berlin, pp 1–28
48. Pauling L, Wilson EB Jr. (1935) Introduction to quantum mechanics. McGraw-Hill, New York.
See especially Chap X, p 262
49. Born M (1951) Nachr. Akad. Wiss. Göttingen. Math-Phys. Klasse IIa. Math Phys Chem Abt,
S Art Nr 6:1–3
50. O’Malley TF (1971) Adv At Mol Phys 7:223–249
51. Hall GG (1987) Int J Quant Chem XXXI:383–391
52. Loss M, Miyao T, Spohn H (2007) J Funct Anal 243:353–393
53. Reed M, Simon B (1978) Analysis of operators. Methods of modern mathematical physics,
vol IV. Academic Press, New York
