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Molecular Physics
An International Journal at the Interface Between Chemistry and Physics
Volume 81, 1994 - Issue 4
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Original Articles

Measurement of the first excited bending state of Ar-CO using a new concentration modulation technique in the jet

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Pages 1003-1010 | Received 26 Jul 1993, Accepted 20 Sep 1993, Published online: 26 Oct 2007

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Read on this site (11)

I. SCHEELE, R. LEHNIG & M. HAVENITH. (2001) Observation of a high lying van der Waals mode in the intermolecular potential of Ar-CO. Molecular Physics 99:3, pages 205-209.
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MATTHEWD. BROOKES & A. R. W. McKellar. (1999) Infrared spectra of the Kr—CO and Xe—CO van der Waals complexes. Molecular Physics 97:1-2, pages 127-137.
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A. R. W. McKELLAR M.-C. CHAN. (1998) Infrared spectrum of the CO–Ne complex: long-path diode laser observations of higher excited states. Molecular Physics 93:2, pages 253-262.
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By M. HEPP, R. GENDRIESCH, I. PAK, Y. A. KURITSYN, F. LEWEN, M. BROOKES, A. R. W. MCKELLAR, J. K. G. WATSON G. WINNEWISSER and T. AMANO, J. K. G. WATSON, G. WINNEWISSER & T. AMANO. (1997) Millimetre-wave spectrum of the Ar-CO complex: the K=2 1 and 3 2 subbands. Molecular Physics 92:2, pages 229-236.
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S. KONIG & M. HAVENITH. (1997) Measurement of the K a = 1 (v co = 1)stretching mode in Ar—CO using a Herriott multipass cell. Molecular Physics 91:2, pages 265-272.
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Yunjie Xu, S. Civiš, A.R.W. McKellar, S. König, M. Haverlag, G. Hilpert & M. Havenith. (1996) High-K (‘propeller’) states in the infrared spectrum of the Ar-CO complex. Molecular Physics 87:5, pages 1071-1082.
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S. König, G. Hilpert & M. Havenith. (1995) Observation of strong Coriolis coupling in the infrared spectrum of Ar-CO. Molecular Physics 86:5, pages 1233-1247.
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Articles from other publishers (43)

Oliver Zingsheim, Luis Bonah, Frank Lewen, Sven Thorwirth, Holger S.P. Müller & Stephan Schlemmer. (2021) Millimeter-millimeter-wave double-modulation double-resonance spectroscopy. Journal of Molecular Spectroscopy 381, pages 111519.
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O. B. Rodimova. (2021) Absorption Coefficient and Intermolecular Vibrations in the СО–Ar System. Atmospheric and Oceanic Optics 34:4, pages 288-292.
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Rui Zheng & Limin Zheng. (2021) An effective methodology to predict infrared spectra of van der Waals complexes: A case of Ar–CO complex. Journal of Quantitative Spectroscopy and Radiative Transfer 258, pages 107367.
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Yoshihiro Sumiyoshi & Yasuki Endo. (2015) Three-dimensional potential energy surface of Ar–CO. The Journal of Chemical Physics 142:2.
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X. Liu, Y. Xu, Z. Su, W. S. Tam & I. Leonov. (2010) Jet-cooled infrared spectra of molecules and complexes with a cw mode-hop-free external-cavity QCL and a distributed-feedback QCL. Applied Physics B 102:3, pages 629-639.
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Harold Linnartz. 2009. Cavity Ring‐Down Spectroscopy. Cavity Ring‐Down Spectroscopy 145 179 .
Eryin Feng, Yu Zhang, Zhongquan Wang, Mei Niu & Zhifeng Cui. (2009) Rovibrational structure of the Xe–CO complex based on a new three-dimensional ab initio potential . The Journal of Chemical Physics 130:12.
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A. Gutberlet, G.W. Schwaab & M. Havenith. (2008) High resolution IR spectroscopy of the carbonyl stretch of (DCOOD)2. Chemical Physics 343:2-3, pages 158-167.
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Markus Ortlieb & Martina Havenith. (2007) Proton Transfer in (HCOOH) 2 :  An IR High-Resolution Spectroscopic Study of the Antisymmetric C−O Stretch . The Journal of Physical Chemistry A 111:31, pages 7355-7363.
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Klaus von Haeften, Stephan Rudolph, Iaroslav Simanovski, Martina Havenith, Robert E. Zillich & K. Birgitta Whaley. (2006) Probing phonon-rotation coupling in helium nanodroplets: Infrared spectroscopy of CO and its isotopomers. Physical Review B 73:5.
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L. H. Coudert, I. Pak & L. Surin. (2004) The potential energy surface of the Ar-CO complex obtained using high-resolution data. The Journal of Chemical Physics 121:10, pages 4691-4698.
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Z. Wang, A.L. McIntosh, R.R. Lucchese & J.W. Bevan. (2004) Near infrared diode laser cw slit jet investigations of O13C:HCl, 14N2:HBr and OC:HBr. Journal of Molecular Structure 695-696, pages 171-180.
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M. Havenith. (2003) Comment on “Theoretical absorption spectrum of the Ar–CO van der Waals complex” [J. Chem. Phys. 118 , 9596 (2003)] . The Journal of Chemical Physics 119:14, pages 7604-7604.
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Javier López Cacheiro, Berta Fernández, Thomas Bondo Pedersen & Henrik Koch. (2003) Theoretical absorption spectrum of the Ar–CO van der Waals complex. The Journal of Chemical Physics 118:21, pages 9596-9607.
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G Gimmler & M Havenith. (2002) High-Resolution IR Spectroscopy of the N2O–H2O and N2O–D2O van der Waals Complexes. Journal of Molecular Spectroscopy 216:2, pages 315-321.
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Thomas Bondo Pedersen, Javier López Cacheiro, Berta Fernández & Henrik Koch. (2002) Rovibrational structure of the Ar–CO complex based on a novel three-dimensional ab initio potential . The Journal of Chemical Physics 117:14, pages 6562-6572.
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D. Verdes & H. Linnartz. (2002) Depletion modulation of Ar–H2O in a supersonic planar plasma. Chemical Physics Letters 355:5-6, pages 538-542.
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Karl-Michael Weitzel & Joachim Mähnert. (2002) The binding energies of small Ar, CO and N2 cluster ions. International Journal of Mass Spectrometry 214:2, pages 175-212.
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F. A. Gianturco & F. Paesani. (2001) The rovibrational structure of the Ar–CO complex from a model interaction potential. The Journal of Chemical Physics 115:1, pages 249-256.
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Changhong Xia, Kaley A. Walker & A. R. W. McKellar. (2001) Infrared and millimeter wave spectra of the CH4–CO complex in the A internal rotation state . The Journal of Chemical Physics 114:11, pages 4824-4828.
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Kaley A. Walker & A.R.W. McKellar. (2001) Millimeter-Wave Spectroscopy of Kr-CO and Xe-CO Using a Coaxial Jet Spectrometer. Journal of Molecular Spectroscopy 205:2, pages 331-337.
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Yunjie Xu & Wolfgang Jäger. (2000) The dynamics of the CO–N2 interaction: Strong Coriolis coupling in CO-paraN2. The Journal of Chemical Physics 113:2, pages 514-524.
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Harold Linnartz, Dorinel Verdes & Thomas Speck. (2000) High resolution infrared direct absorption spectroscopy of ionic complexes. Review of Scientific Instruments 71:4, pages 1811-1815.
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Rafał R. Toczyłowski & Sławomir M. Cybulski. (2000) An ab initio study of the potential energy surface and spectrum of Ar–CO . The Journal of Chemical Physics 112:10, pages 4604-4612.
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Yunjie Xu, Wolfgang Jäger, L. A. Surin, I. Pak, L. A. Panfilov & G. Winnewisser. (1999) Microwave and millimeter wave study of Ortho-N2 states of CO–N2. The Journal of Chemical Physics 111:23, pages 10476-10483.
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R. Gendriesch, I. Pak, F. Lewen, L. Surin, D.A. Roth & G. Winnewisser. (1999) Submillimeter Detection of the van der Waals Stretching Vibration of the Ar–CO Complex. Journal of Molecular Spectroscopy 196:1, pages 139-145.
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K.M.T. Yamada. (1999) Spectroscopy of clusters at NAIR. Journal of Molecular Structure 480-481, pages 45-59.
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Vladimir N. Markov, Yunjie Xu & Wolfgang Jäger. (1998) Microwave-submillimeter wave double-resonance spectrometer for the investigation of van der Waals complexes. Review of Scientific Instruments 69:12, pages 4061-4067.
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A. R. W. McKellar. (1998) High-resolution infrared spectrum and energy levels of the weakly bound complex, CO– para H2 . The Journal of Chemical Physics 108:5, pages 1811-1820.
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Joachim Mähnert, Helmut Baumgärtel & Karl-Michael Weitzel. (1997) The formation of ArCO+ ions by dissociative ionization of argon/carbonmonoxide clusters. The Journal of Chemical Physics 107:17, pages 6667-6676.
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M. Hepp, R. Gendriesch, I. Pak, F. Lewen & G. Winnewisser. (1997) Submillimeter-Wave Absorption Spectroscopy of the Ar–CO Complex: Detection of the van der Waals Bending Vibration. Journal of Molecular Spectroscopy 183:2, pages 295-299.
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Kaley A. Walker, Teruhiko Ogata, Wolfgang Jäger, M. C. L. Gerry & Irving Ozier. (1997) Pure rotational spectra of the van der Waals complexes Ne–CO, Kr–CO, and Xe–CO. The Journal of Chemical Physics 106:18, pages 7519-7530.
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I. Pak, M. Hepp, D. A. Roth & G. Winnewisser. (1997) A combined absorption–wavelength modulation technique for diode laser spectroscopy of van der Waals complexes in a pulsed planar jet. Review of Scientific Instruments 68:4, pages 1668-1674.
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Jos Oomens & Jörg Reuss. (2013) Tricky IR Monomer Spectroscopy in Planar Molecular Jets. Israel Journal of Chemistry 37:4, pages 367-378.
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Christof Hättig & Bernd Artur Hess. (1996) TDMP2 calculation of dynamic multipole polarizabilities and dispersion coefficients of the triplebonded molecules CO, N2, CN−, and NO+. The Journal of Chemical Physics 105:22, pages 9948-9965.
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T. Ruchti, T. Speck, J. P. Connelly, E. J. Bieske, H. Linnartz & J. P. Maier. (1996) Rotationally resolved infrared absorption spectrum of N+4. The Journal of Chemical Physics 105:7, pages 2591-2594.
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Georg Jansen. (1996) The rovibrational spectrum of the ArCO complex calculated from a semiempirically extrapolated coupled pair functional potential energy surface. The Journal of Chemical Physics 105:1, pages 89-103.
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Yunjie Xu & A. R. W. McKellar. (1996) Continuous slit-jet infrared spectrum of the CO–N2 complex. The Journal of Chemical Physics 104:7, pages 2488-2496.
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Seokmin Shin, Seung Koo Shin & Fu-Ming Tao. (1996) Ab   initio potential energy surface and rovibrational energies of Ar⋅ ⋅ ⋅CO . The Journal of Chemical Physics 104:1, pages 183-190.
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Yoshiyuki Kawashima & Kazuhiro Nishiza. (1996) Pulsed molecular beam infrared absorption spectroscopy of the N2CO complex. Chemical Physics Letters 249:1-2, pages 87-91.
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Xu Yunjie, M. Fukushima, T. Amano & A.R.W. McKellar. (1995) Infrared absorption spectroscopy of molecular ions in a corona-discharge slit expansion. Chemical Physics Letters 242:1-2, pages 126-131.
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Wolfgang Jäger & M. C. L. Gerry. (1995) Microwave–millimeter-wave double resonance experiments on Ar–CO. The Journal of Chemical Physics 102:9, pages 3587-3592.
Crossref
A. R. W. Mckellar. 1995. Collision- and Interaction-Induced Spectroscopy. Collision- and Interaction-Induced Spectroscopy 467 484 .

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