The cavity ring-down absorption spectrum of the S0->T and S0-> S1 transition of jet-cooled 4-H-1-benzopyrane-4-thione

Typeset version

 

TY  - JOUR
  - A. A. Ruth*, T. Fernholz, R. P. Brint and M. W. D. Mansfield
  - 1998
  - May
  - Chemical Physics Letters
  - The cavity ring-down absorption spectrum of the S0->T and S0-> S1 transition of jet-cooled 4-H-1-benzopyrane-4-thione
  - Validated
  - ()
  - 287
  - 403
  - 411
  - The very sensitive cavity ring-down method has been applied to the measurement of the absorption of 4-H-1-benzo-pyrane-4-thione (BPT).in a supersonic jet in the wavelength region of the S0->S1 transition between 15800 and 16650 cm-1. The absorption energies of vibronic states corroborate previous assignments in the multi-photon excitationand S0->T1phosphorescence excitation spectra of jet-cooled BPT. The symmetry forbidden 0,0 transition, S0,0->S1,0at16522 cm-1, was found to be 7.5 times weaker than the absorption transition to the triplet origin, S0,0->T1z,0.
  - Elsevier
  - http://www.sciencedirect.com/science?_ob=MImg;_imagekey=B6TFN-3T3KBR3-10-3N;_cdi=5231;_user=77869;_pii=S0009261498001766;_orig=search;_coverDate=05%2F01%2F1998;_sk=997129996;view=c;wchp=dGLzVtz-zSkzS;md5=c4fbc36703e32e08feb962cd83458f05;ie=/sdarticle.pdf
  - doi:10.1016/S0009-2614(98)00176-6
DA  - 1998/05
ER  - 
@article{V15786495,
   = {A. A. Ruth*, T. Fernholz, R. P. Brint and M. W. D. Mansfield},
   = {1998},
   = {May},
   = {Chemical Physics Letters},
   = {The cavity ring-down absorption spectrum of the S0->T and S0-> S1 transition of jet-cooled 4-H-1-benzopyrane-4-thione},
   = {Validated},
   = {()},
   = {287},
  pages = {403--411},
   = {{The very sensitive cavity ring-down method has been applied to the measurement of the absorption of 4-H-1-benzo-pyrane-4-thione (BPT).in a supersonic jet in the wavelength region of the S0->S1 transition between 15800 and 16650 cm-1. The absorption energies of vibronic states corroborate previous assignments in the multi-photon excitationand S0->T1phosphorescence excitation spectra of jet-cooled BPT. The symmetry forbidden 0,0 transition, S0,0->S1,0at16522 cm-1, was found to be 7.5 times weaker than the absorption transition to the triplet origin, S0,0->T1z,0.}},
   = {Elsevier},
   = {http://www.sciencedirect.com/science?_ob=MImg;_imagekey=B6TFN-3T3KBR3-10-3N;_cdi=5231;_user=77869;_pii=S0009261498001766;_orig=search;_coverDate=05%2F01%2F1998;_sk=997129996;view=c;wchp=dGLzVtz-zSkzS;md5=c4fbc36703e32e08feb962cd83458f05;ie=/sdarticle.pdf},
   = {doi:10.1016/S0009-2614(98)00176-6},
  source = {IRIS}
}
AUTHORSA. A. Ruth*, T. Fernholz, R. P. Brint and M. W. D. Mansfield
YEAR1998
MONTHMay
JOURNAL_CODEChemical Physics Letters
TITLEThe cavity ring-down absorption spectrum of the S0->T and S0-> S1 transition of jet-cooled 4-H-1-benzopyrane-4-thione
STATUSValidated
TIMES_CITED()
SEARCH_KEYWORD
VOLUME287
ISSUE
START_PAGE403
END_PAGE411
ABSTRACTThe very sensitive cavity ring-down method has been applied to the measurement of the absorption of 4-H-1-benzo-pyrane-4-thione (BPT).in a supersonic jet in the wavelength region of the S0->S1 transition between 15800 and 16650 cm-1. The absorption energies of vibronic states corroborate previous assignments in the multi-photon excitationand S0->T1phosphorescence excitation spectra of jet-cooled BPT. The symmetry forbidden 0,0 transition, S0,0->S1,0at16522 cm-1, was found to be 7.5 times weaker than the absorption transition to the triplet origin, S0,0->T1z,0.
PUBLISHER_LOCATIONElsevier
ISBN_ISSN
EDITION
URLhttp://www.sciencedirect.com/science?_ob=MImg;_imagekey=B6TFN-3T3KBR3-10-3N;_cdi=5231;_user=77869;_pii=S0009261498001766;_orig=search;_coverDate=05%2F01%2F1998;_sk=997129996;view=c;wchp=dGLzVtz-zSkzS;md5=c4fbc36703e32e08feb962cd83458f05;ie=/sdarticle.pdf
DOI_LINKdoi:10.1016/S0009-2614(98)00176-6
FUNDING_BODY
GRANT_DETAILS