Matches in SemOpenAlex for { <https://semopenalex.org/work/W2012259887> ?p ?o ?g. }
- W2012259887 endingPage "353" @default.
- W2012259887 startingPage "303" @default.
- W2012259887 abstract "A comprehensive study of the excited electronic states of HCl is reported. Using resonance enhanced multiphoton ionization ((2 + 1) REMPI) and time-of-flight mass spectrometry (TOFMS) over 120 band systems are analyzed. Supersonic jet techniques are used to prepare rotationally cold species for laser spectroscopy in the 77 000 to 96 000 cm−1 region. At least 50 new electronic states are characterized as well as several features only tentatively assigned previously. A long vibrational progression consisting of 29 vibrational levels of the deeply bound V1Σ+(0+) valence/ion-pair state is studied. We also extend the identification and analysis to high vibrational levels of low-lying Rydberg states. The assignments of [2Πi] Rydberg state complexes are evaluated in terms of spin-orbit coupling and united-atom calculations. In several band systems, the spectra exhibit anomalous rotational line intensities and broadened linewidths which are consistent with predissociation. Multiphoton ionization with mass spectrometry permits the investigation of isotope effects as well as the appearance of fragment species associated with repulsive potential curves." @default.
- W2012259887 created "2016-06-24" @default.
- W2012259887 creator A5022416589 @default.
- W2012259887 creator A5038831116 @default.
- W2012259887 creator A5057693302 @default.
- W2012259887 date "1991-12-01" @default.
- W2012259887 modified "2023-09-24" @default.
- W2012259887 title "(2 + 1) Resonance enhanced multiphoton ionization of hydrogen chloride in a pulsed supersonic jet: Spectroscopic survey" @default.
- W2012259887 cites W1543979677 @default.
- W2012259887 cites W1625944375 @default.
- W2012259887 cites W1678418384 @default.
- W2012259887 cites W1755123335 @default.
- W2012259887 cites W1964204526 @default.
- W2012259887 cites W1965097446 @default.
- W2012259887 cites W1969016939 @default.
- W2012259887 cites W1973078949 @default.
- W2012259887 cites W1975245218 @default.
- W2012259887 cites W1977721925 @default.
- W2012259887 cites W1978233783 @default.
- W2012259887 cites W1979268513 @default.
- W2012259887 cites W1979675280 @default.
- W2012259887 cites W1981009250 @default.
- W2012259887 cites W1981259284 @default.
- W2012259887 cites W1983115111 @default.
- W2012259887 cites W1987642201 @default.
- W2012259887 cites W1991715341 @default.
- W2012259887 cites W1992407892 @default.
- W2012259887 cites W1993403952 @default.
- W2012259887 cites W1994328371 @default.
- W2012259887 cites W1995071956 @default.
- W2012259887 cites W1997205928 @default.
- W2012259887 cites W1998931034 @default.
- W2012259887 cites W2000959514 @default.
- W2012259887 cites W2003456441 @default.
- W2012259887 cites W2005999073 @default.
- W2012259887 cites W2009855044 @default.
- W2012259887 cites W2013576793 @default.
- W2012259887 cites W2017288035 @default.
- W2012259887 cites W2022346184 @default.
- W2012259887 cites W2025204937 @default.
- W2012259887 cites W2025364260 @default.
- W2012259887 cites W2025370245 @default.
- W2012259887 cites W2025676381 @default.
- W2012259887 cites W2026001959 @default.
- W2012259887 cites W2027896713 @default.
- W2012259887 cites W2032128634 @default.
- W2012259887 cites W2032197293 @default.
- W2012259887 cites W2032337195 @default.
- W2012259887 cites W2041551109 @default.
- W2012259887 cites W2042575328 @default.
- W2012259887 cites W2049467137 @default.
- W2012259887 cites W2052492768 @default.
- W2012259887 cites W2054638560 @default.
- W2012259887 cites W2055988270 @default.
- W2012259887 cites W2057866950 @default.
- W2012259887 cites W2057937561 @default.
- W2012259887 cites W2060211288 @default.
- W2012259887 cites W2061226253 @default.
- W2012259887 cites W2061370581 @default.
- W2012259887 cites W2064734942 @default.
- W2012259887 cites W2067448968 @default.
- W2012259887 cites W2071475121 @default.
- W2012259887 cites W2073246962 @default.
- W2012259887 cites W2077355549 @default.
- W2012259887 cites W2078198534 @default.
- W2012259887 cites W2079036316 @default.
- W2012259887 cites W2091186597 @default.
- W2012259887 cites W2094886054 @default.
- W2012259887 cites W2248002324 @default.
- W2012259887 cites W2312728100 @default.
- W2012259887 cites W2767251880 @default.
- W2012259887 cites W3022394311 @default.
- W2012259887 cites W4234581663 @default.
- W2012259887 cites W4236785559 @default.
- W2012259887 cites W4237141153 @default.
- W2012259887 cites W4243217185 @default.
- W2012259887 cites W4247480094 @default.
- W2012259887 cites W4254346653 @default.
- W2012259887 cites W4256255792 @default.
- W2012259887 cites W2071831188 @default.
- W2012259887 doi "https://doi.org/10.1016/0022-2852(91)90238-6" @default.
- W2012259887 hasPublicationYear "1991" @default.
- W2012259887 type Work @default.
- W2012259887 sameAs 2012259887 @default.
- W2012259887 citedByCount "79" @default.
- W2012259887 countsByYear W20122598872012 @default.
- W2012259887 countsByYear W20122598872013 @default.
- W2012259887 countsByYear W20122598872014 @default.
- W2012259887 countsByYear W20122598872015 @default.
- W2012259887 countsByYear W20122598872016 @default.
- W2012259887 countsByYear W20122598872017 @default.
- W2012259887 countsByYear W20122598872019 @default.
- W2012259887 countsByYear W20122598872020 @default.
- W2012259887 countsByYear W20122598872022 @default.
- W2012259887 countsByYear W20122598872023 @default.
- W2012259887 crossrefType "journal-article" @default.
- W2012259887 hasAuthorship W2012259887A5022416589 @default.
- W2012259887 hasAuthorship W2012259887A5038831116 @default.