Journal ArticleDOI
Vibrational and rotational relaxation of iodine in seeded supersonic beams
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This article is published in The Journal of Physical Chemistry.The article was published on 1979-04-19. It has received 146 citations till now. The article focuses on the topics: Relaxation (physics).read more
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Fabry–Perot cavity pulsed Fourier transform microwave spectrometer with a pulsed nozzle particle source
T. J. Balle,W. H. Flygare +1 more
TL;DR: In this article, the design, construction, and operation of a new type of microwave spectrograph which allows the measurement of the resonant transitions of transient or otherwise short-lived species is described.
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Photoelectron spectroscopy of mass-selected metal cluster anions. I. Cu−n, n=1–10
TL;DR: In this article, photoelectron spectra of the copper cluster anions yield measurements for vertical electron binding energies and adiabatic electron affinities as a function of cluster size.
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Methylene: A study of the X̃ 3B1 and ã 1A1 states by photoelectron spectroscopy of CH−2 and CD−2
Doreen G. Leopold,Kermit K. Murray,Amy E. Stevens Miller,Amy E. Stevens Miller,W. C. Lineberger +4 more
TL;DR: In this article, a new flowing afterglow photoelectron spectrometer with improved energy resolution (11 meV) is presented for the CH2(X 3B1)+e−e−←CH−2 (X 2B1) transitions of the methylene and perdeuterated methylene anions, with an electron affinity of 0.652 ± 0.006 eV and a singlet-triplet splitting of 9.7± 0.09 kcal/mol.
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Controlling the alignment of neutral molecules by a strong laser field
Hirofumi Sakai,C. P. Safvan,Jakob Juul Larsen,Karen Marie Hilligso,Kasper Hald,Henrik Stapelfeldt +5 more
TL;DR: In this article, a strong nonresonant nanosecond laser pulse is used to align neutral iodine molecules, which relies on the interaction between the strong laser field and the induced dipole moment of the molecules.
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Aligning molecules with intense nonresonant laser fields
TL;DR: In this article, the authors demonstrate the general applicability of the scheme by aligning I2, ICl, CS2, CH3I, and C6H5I molecules.