A Mathematical Theory for Vibrational Levels Associated with Hydrogen Bonds
Author:
Publisher
Springer Science and Business Media LLC
Subject
Atomic and Molecular Physics, and Optics
Link
http://link.springer.com/content/pdf/10.1007/s00601-009-0024-9.pdf
Reference6 articles.
1. Born M., Oppenheimer J.R.: Zur Quantentheorie der Molekeln. Ann. Phys. (Leipzig) 84, 457–484 (1927)
2. Elghobashi N., González L.: A theoretical anharmonic study of the infrared abosrption spectra of FHF−, FDF−, OHF−, and ODF− ions. J. Chem. Phys. 124, 174308 (2006)
3. Hagedorn G.A., Joye A.: Mathematical analysis of Born–Oppenheimer approximations. In: Gesztesy, F., Deift, P., Galvez, C., Perry, P., Schlag, W. (eds.) Spectral Theory and Mathematical Physics: A Festschrift in Honor of Barry Simon’s 60th Birthday. Part I: Quantum Field Theory, Statistical Mechanics, and Nonrelativistic Quantum Systems. AMS Proc. Symp. Pure Math. 76, 203–206 (2007)
4. Hagedorn G.A., Joye A.: A mathematical theory for vibrational levels associated with hydrogen bonds I: the symmetric case. Commun. Math. Phys. 274, 691–715 (2007)
5. Hagedorn G.A., Joye A.: Vibrational levels associated with hydrogen bonds and semiclassical Hamiltonian normal forms. In: Germinet, F., Hislop, P. (eds.) Adventures in Mathematical Physics: International Conference in Honor of Jean–Michel Combes on Transport and Spectral Problems in Quantum Mechanics. AMS Contemp. Math. Ser. 447, 139–151 (2007)
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