102
4 Rotation of the Polyatomic Molecule
References
Baker JG (1979) Microwave-microwave double resonance. In: Chantry GW (ed) Modern aspects
of microwave spectroscopy. Academic Press, London, pp 65–122
Balle TJ, Flygare WH (1981) Fabry-Perot cavity pulsed Fourier transform microwave spectrometer
with a pulsed nozzle particle source. Rev Sci Instrum 52:33–45
Balle TJ, Campbell EJ, Keenan MR, Flygare WH (1980) A new method for observing the rotational
spectra of weak molecular complexes: KrHCl. J Chem Phys 72:922–932
Barros J, Evain C, Roussel E, Manceron L, Brubach J-B, Tordeux M-A, Couprie M-E, Bielawski
S, Szwaj C, Labat M, Roy P (2015) Characteristics and development of the coherent synchrotron
radiation sources for THz spectroscopy. J Mol Spectrosc 315:3–9
Brown GG, Dian BC, Douglass KO, Geyer SM, Shipman ST, Pate BH (2008) A broadband Fourier
transform microwave spectrometer based on chirped pulse excitation. Rev Sci Inst 79:053103
Bunker PR, Jensen P (1998) Molecular symmetry and spectroscopy. NRC Research Press, Ottawa
Caminati W, Grabow J-U (2009) Microwave molecular systems. In: Laane J (ed) Frontiers of
molecular spectroscopy. Elsevier, Amsterdam, pp 455–552
Caminati W, Grabow J-U (2018) Advancements in microwave spectroscopy. In: Laane J (ed)
Frontiers and advances in molecular spectroscopy. Elsevier, Amsterdam, pp 569–598
Cleeton CE, Williams NH (1934) Electromagnetic waves of 1.1 cm wave-Length and the absorption
spectrum of ammonia. Phys Rev 45:234–237
Demaison J, Herman M, Liévin J (2007) Anharmonic force field of cis- and trans-formic acid from
high-level ab initio calculations, and analysis of resonance polyads. J Chem Phys 126:164305
Demaison J, Császár AG, Margulès L, Rudolph HD (2011) Equilibrium structures of heterocyclic molecules with large principal axis rotations upon isotopic substitution. J Phys Chem
A 115:14078–14091
Dowling G (1961) Centrifugal distortion in planar molecules. J Mol Spectrosc 6:550–553
Drouin BJ, Maiwald FW, Pearson JC (2005) Application of cascaded frequency multiplication to
molecular spectroscopy. Rev Sci Instrum 76:093113
Ekkers J, Flygare WH (1976) Pulsed microwave Fourier transform spectrometer. Rev Sci Inst
47:448–454
Gauss J, Ruud K, Helgaker T (1996) Perturbation-dependent atomic orbitals for the calculation of
spin-rotation constants and rotational g tensors. J Chem Phys 105:2804–2812
Gordy W, Cook RL (1984) Microwave molecular spectra. Wiley, New York
Grabow J-U (2013) Fourier transform microwave spectroscopy: Handedness caught by rotational
coherence. Angew Chem Int Ed 52:11698–11700
Grabow J-U, Caminati W (2009) Microwave spectroscopy: experimental techniques. In: Laane J
(ed) Frontiers of molecular spectroscopy. Elsevier, Amsterdam, pp 383–454
Graner G, Bürger H (1997) Hot bands in infrared spectra of symmetric tops and some other
molecules. A useful tool to reach hidden information. In: Papousek D (ed) Vibration-rotational
spectroscopy and molecular dynamics. World Scientific, Singapore, pp 239–297
Graner G, Demaison J, Wlodarczak G, Anttila R, Hillman JJ, Jennings DE (1988) A preliminary
determination of the A 0 rotational constant of propyne. Mol Phys 64:921–932
Guarnieri A, Demaison J, Rudolph HD (2010) Structure of ketene-revisited r e and r m structures. J
Mol Struct 969:1–8
Gwinn WD, Luntz AC, Sederholm CH, Millikan R (1968) On-line control, data collection, and
reduction for chemical experiments at Berkeley. J Comput Phys 2:439–464
Hughes RH, Wilson EB (1947) A microwave spectrograph. Phys Rev 71:562–563
Jones H (1979) Infrared-microwave double resonance techniques. In: Chantry GW (ed) Modern
aspects of microwave spectroscopy. Academic Press, London, pp 123–216
King WC, Gordy W (1953) One to two millimeterwave spectroscopy. I Phys Rev 90:319–320
King WC, Gordy W (1954) One to two millimeterwave spectroscopy IV. Experimental methods
and results for OCS, CH 3 F, and H 2 O. Phys Rev 93:407–412
4 Rotation of the Polyatomic Molecule
References
Baker JG (1979) Microwave-microwave double resonance. In: Chantry GW (ed) Modern aspects
of microwave spectroscopy. Academic Press, London, pp 65–122
Balle TJ, Flygare WH (1981) Fabry-Perot cavity pulsed Fourier transform microwave spectrometer
with a pulsed nozzle particle source. Rev Sci Instrum 52:33–45
Balle TJ, Campbell EJ, Keenan MR, Flygare WH (1980) A new method for observing the rotational
spectra of weak molecular complexes: KrHCl. J Chem Phys 72:922–932
Barros J, Evain C, Roussel E, Manceron L, Brubach J-B, Tordeux M-A, Couprie M-E, Bielawski
S, Szwaj C, Labat M, Roy P (2015) Characteristics and development of the coherent synchrotron
radiation sources for THz spectroscopy. J Mol Spectrosc 315:3–9
Brown GG, Dian BC, Douglass KO, Geyer SM, Shipman ST, Pate BH (2008) A broadband Fourier
transform microwave spectrometer based on chirped pulse excitation. Rev Sci Inst 79:053103
Bunker PR, Jensen P (1998) Molecular symmetry and spectroscopy. NRC Research Press, Ottawa
Caminati W, Grabow J-U (2009) Microwave molecular systems. In: Laane J (ed) Frontiers of
molecular spectroscopy. Elsevier, Amsterdam, pp 455–552
Caminati W, Grabow J-U (2018) Advancements in microwave spectroscopy. In: Laane J (ed)
Frontiers and advances in molecular spectroscopy. Elsevier, Amsterdam, pp 569–598
Cleeton CE, Williams NH (1934) Electromagnetic waves of 1.1 cm wave-Length and the absorption
spectrum of ammonia. Phys Rev 45:234–237
Demaison J, Herman M, Liévin J (2007) Anharmonic force field of cis- and trans-formic acid from
high-level ab initio calculations, and analysis of resonance polyads. J Chem Phys 126:164305
Demaison J, Császár AG, Margulès L, Rudolph HD (2011) Equilibrium structures of heterocyclic molecules with large principal axis rotations upon isotopic substitution. J Phys Chem
A 115:14078–14091
Dowling G (1961) Centrifugal distortion in planar molecules. J Mol Spectrosc 6:550–553
Drouin BJ, Maiwald FW, Pearson JC (2005) Application of cascaded frequency multiplication to
molecular spectroscopy. Rev Sci Instrum 76:093113
Ekkers J, Flygare WH (1976) Pulsed microwave Fourier transform spectrometer. Rev Sci Inst
47:448–454
Gauss J, Ruud K, Helgaker T (1996) Perturbation-dependent atomic orbitals for the calculation of
spin-rotation constants and rotational g tensors. J Chem Phys 105:2804–2812
Gordy W, Cook RL (1984) Microwave molecular spectra. Wiley, New York
Grabow J-U (2013) Fourier transform microwave spectroscopy: Handedness caught by rotational
coherence. Angew Chem Int Ed 52:11698–11700
Grabow J-U, Caminati W (2009) Microwave spectroscopy: experimental techniques. In: Laane J
(ed) Frontiers of molecular spectroscopy. Elsevier, Amsterdam, pp 383–454
Graner G, Bürger H (1997) Hot bands in infrared spectra of symmetric tops and some other
molecules. A useful tool to reach hidden information. In: Papousek D (ed) Vibration-rotational
spectroscopy and molecular dynamics. World Scientific, Singapore, pp 239–297
Graner G, Demaison J, Wlodarczak G, Anttila R, Hillman JJ, Jennings DE (1988) A preliminary
determination of the A 0 rotational constant of propyne. Mol Phys 64:921–932
Guarnieri A, Demaison J, Rudolph HD (2010) Structure of ketene-revisited r e and r m structures. J
Mol Struct 969:1–8
Gwinn WD, Luntz AC, Sederholm CH, Millikan R (1968) On-line control, data collection, and
reduction for chemical experiments at Berkeley. J Comput Phys 2:439–464
Hughes RH, Wilson EB (1947) A microwave spectrograph. Phys Rev 71:562–563
Jones H (1979) Infrared-microwave double resonance techniques. In: Chantry GW (ed) Modern
aspects of microwave spectroscopy. Academic Press, London, pp 123–216
King WC, Gordy W (1953) One to two millimeterwave spectroscopy. I Phys Rev 90:319–320
King WC, Gordy W (1954) One to two millimeterwave spectroscopy IV. Experimental methods
and results for OCS, CH 3 F, and H 2 O. Phys Rev 93:407–412
