The absorption spectrum of water between 13 540 and 14 070 cm-1: ICLAS detection of weak lines and a complete line list; Journal of Quantitative Spectroscopy and Radiative Transfer; Vol. 133, № 11
| Источник: | Journal of Quantitative Spectroscopy and Radiative Transfer.— , 1961- Vol. 133, № 11.— 2012.— [P. 859–869] |
|---|---|
| Автор-организация: | Национальный исследовательский Томский политехнический университет (ТПУ) Физико-технический институт (ФТИ) Кафедра высшей математики и математической физики (ВММФ) |
| Другие авторы: | Oudot С., Regalia S., Mikhailenko S. N. Semen Nikolaevich, Thomas X., Decatoire D. |
| Примечания: | Title screen The spectra of water vapor enriched by 18O were recorded in the 1000-2300 cm−1 spectral range, which corresponds to the spectral region studied by IASI instrument (Infrared Atmospheric Sounding Spectrometer) instrument. The spectra were recorded by a step by step Fourier Transform Spectrometer (FTS) at room temperature with absorption path lengths up to 36 m. Positions, intensities and self broadening coefficients of about 1800 lines of H218O and 900 of HD18O were analyzed and all the transitions were assigned. This paper focuses on lines intensities and comparisons with data from literature are presented. An average difference of 10% with HITRAN2008 database H218O line intensities is found with a maximum discrepancy of about 25% for the ν1-ν2 band. Режим доступа: по договору с организацией-держателем ресурса |
| Язык: | английский |
| Опубликовано: |
2012
|
| Предметы: | |
| Online-ссылка: | http://www.sciencedirect.com/science/article/pii/S002228521000264X |
| Формат: | Электронный ресурс Статья |
| Запись в KOHA: | https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=642436 |
Схожие документы
An accurate and complete empirical line list for water vapor between 5850 and 7920 cm−1; Journal of Quantitative Spectroscopy and Radiative Transfer; Vol. 140
Опубликовано: (2014)
Опубликовано: (2014)
Study of H216O and H218O absorption in the 16,460-17,200 cm-1 range using LED-based Fourier transform spectroscopy; Journal of Quantitative Spectroscopy and Radiative Transfer; Vol. 217
по: Mikhailenko S. N. Semen Nikolaevich
Опубликовано: (2018)
по: Mikhailenko S. N. Semen Nikolaevich
Опубликовано: (2018)
Relaxation parameters of absorption lines of vibrationally excited HF molecule; Bulletin of the Tomsk Polytechnic University; Vol. 311, № 2
по: Stroinova V. N.
Опубликовано: (2007)
по: Stroinova V. N.
Опубликовано: (2007)
Isotopic substitution shifts in methane and vibrational band assignment in the 5560–6200 cm-1 region; Journal of Quantitative Spectroscopy and Radiative Transfer; Vol. 110, № 12
Опубликовано: (2009)
Опубликовано: (2009)
Efficiency of an increase in the radiation stability in various regions of the absorption spectrum of coatings based on TiO2 powders modified by SiO2 nanoparticles; Russian Physics Journal; Vol. 55, iss. 7
Опубликовано: (2012)
Опубликовано: (2012)
Water vapor absorption line intensities in the 1900–6600 cm-1 region; Journal of Quantitative Spectroscopy and Radiative Transfer; Vol. 109, № 16
Опубликовано: (2008)
Опубликовано: (2008)
High resolution FTIR spectroscopy of fluoroform 12CHF3 and critical analysis of the infrared spectrum from 25 to 1500 cm−1; Molecular Physics; Vol. 116, iss. 9
Опубликовано: (2018)
Опубликовано: (2018)
Propagation of optical pulses at an absorption line in the presence of a weak nonlinearity; Soviet Physics Journal; Vol. 32, iss. 2
по: Lugin E. V.
Опубликовано: (1989)
по: Lugin E. V.
Опубликовано: (1989)
Time-resolved optical absorption measurements of calcium fluoride crystals; Optical Materials; Vol. 150
по: Stepanov S. A. Sergey Aleksandrovich
Опубликовано: (2024)
по: Stepanov S. A. Sergey Aleksandrovich
Опубликовано: (2024)
Absorption of Water Vapor by Bambus[6]uril and a Density Functional Theory Study of Its Aqua Complexes; Molecules; Vol. 28, iss. 23
Опубликовано: (2023)
Опубликовано: (2023)
Transient optical absorption in calcium fluoride crystals; Radiation Physics and Chemistry; Vol. 191
Опубликовано: (2022)
Опубликовано: (2022)
Features of spectral dependence of single scattering characteristics for crystalline clouds; Journal of Quantitative Spectroscopy and Radiative Transfer; Vol. 251
по: Shefer O. V. Olga Vladimirovna
Опубликовано: (2021)
по: Shefer O. V. Olga Vladimirovna
Опубликовано: (2021)
Water vapor line parameters from 6450 to 9400 cm-1; Journal of Quantitative Spectroscopy and Radiative Transfer; Vol. 136
Опубликовано: (2014)
Опубликовано: (2014)
Determination of Au, Pb, Ni and Co in Mineral Raw Materials by Atomic Absorption Spectroscopy with Graphite Furnace; Procedia Chemistry; Vol. 10 : Chemistry and Chemical Engineering in XXI century
Опубликовано: (2014)
Опубликовано: (2014)
A solvent-free process enabling ZnO/porous carbon with enhanced microwave absorption; Journal of Materials Science & Technology; Vol. 149
Опубликовано: (2023)
Опубликовано: (2023)
The absorption spectrum of water vapor in the 1.25 nm atmospheric window (7911–8337cm-1); Journal of Quantitative Spectroscopy and Radiative Transfer; Vol. 157
Опубликовано: (2015)
Опубликовано: (2015)
Weak water absorption lines around 1.455 and 1.66 μm by CW-CRDS; Journal of Molecular Spectroscopy; Vol. 244, № 2
Опубликовано: (2007)
Опубликовано: (2007)
Calculation of spherical inclusion's heating taking into account the absorption cross section of a particle and wavelength of laser radiation; Energy Fluxes and Radiation Effects (EFRE-2016)
Опубликовано: (2016)
Опубликовано: (2016)
Lines
по: Samuel T. C.
Опубликовано: (Санкт-Петербург, Лань, 2013)
по: Samuel T. C.
Опубликовано: (Санкт-Петербург, Лань, 2013)
Optical Properties of Aluminum- and Silicon-Nitride Films and Al–Si–N Nanocomposite Coatings Deposited by Reactive Magnetron Sputtering; Journal of Surface Investigation. X-ray, Synchrotron and Neutron Techniques; Vol. 15, iss. 1
Опубликовано: (2021)
Опубликовано: (2021)
Optical Properties of Al–Si–N Coatings Deposited by Reactive Magnetron Sputtering on Steel 12H18N10T and Zirconium Alloy E110; Journal of Surface Investigation. X-ray, Synchrotron and Neutron Techniques; Vol. 17, s. 1
Опубликовано: (2023)
Опубликовано: (2023)
Optical Absorption Imaging by Photothermal Expansion with 4 nm Resolution; ACS Photonics; Vol. 5, iss. 8
Опубликовано: (2018)
Опубликовано: (2018)
First rotational analysis of the (111) and (021) vibrational state of S16O18O from the “hot” ν1+ν2+ν3−ν2 and 2ν2+ν3−ν2bands; Journal of Quantitative Spectroscopy and Radiative Transfer; Vol. 202
Опубликовано: (2017)
Опубликовано: (2017)
Improved spectroscopic line list of methyl chloride in the 1900–2600 cm(-1) spectral region; Journal of Quantitative Spectroscopy and Radiative Transfer; Vol. 177
по: Nikitin A. V. Andrey Vladimirovich
Опубликовано: (2016)
по: Nikitin A. V. Andrey Vladimirovich
Опубликовано: (2016)
GOSAT-2009 methane spectral line list in the 5550–6236 cm-1 range; Journal of Quantitative Spectroscopy and Radiative Transfer; Vol. 111, № 15
Опубликовано: (2010)
Опубликовано: (2010)
Bimetallic-doped Zeolitic imidazole framework-derived Cobalt-Nitrogen-Carbon supported on reduced graphene oxide enabling efficient microwave absorption; Journal of the Taiwan Institute of Chemical Engineers; Vol. 134
Опубликовано: (2022)
Опубликовано: (2022)
Effect of intense electron and ion irradiation on optical absorption of boron carbide thin films; Radiation Effects and Defects in Solids: Incorporating Plasma Science and Plasma Technology; Vol. 173, iss. 11-12
Опубликовано: (2018)
Опубликовано: (2018)
A pulse cathodoluminescence and transient optical absorption kinetics simulation in Li6ReB3O9 (Re = Gd, Y) crystals doped with Ce-ions; Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms; Vol. 468
по: Kiseleva M. S. Mariya Sergeevna
Опубликовано: (2020)
по: Kiseleva M. S. Mariya Sergeevna
Опубликовано: (2020)
The influence of deformation waves on impact energy absorption and heat release in multi-layer woven fabric ballistic body armor; Ceramics International; Vol. 45, iss. 18
Опубликовано: (2019)
Опубликовано: (2019)
Fourier transform measurements of water vapor line parameters in the 4200–6600 cm-1 region; Journal of Quantitative Spectroscopy and Radiative Transfer; Vol. 105, № 2
Опубликовано: (2007)
Опубликовано: (2007)
Исследование сорбционной емкости материалов по извлечению урана из водных сред; Химия и химическая технология в XXI веке; Т. 2
по: Хaйрулин К. В.
Опубликовано: (2025)
по: Хaйрулин К. В.
Опубликовано: (2025)
The Line of Beauty
по: Hollinghurst A. Alan
Опубликовано: (London, Picador, 2004)
по: Hollinghurst A. Alan
Опубликовано: (London, Picador, 2004)
The Shadow-Line
по: J. Conrad
Опубликовано: (Москва, T8RUGRAM, 2018)
по: J. Conrad
Опубликовано: (Москва, T8RUGRAM, 2018)
The Border Line
по: Lawrence D. H.
Опубликовано: (Санкт-Петербург, Лань, 2013)
по: Lawrence D. H.
Опубликовано: (Санкт-Петербург, Лань, 2013)
Last Lines
по: Bronte E.
Опубликовано: (Санкт-Петербург, Лань, 2013)
по: Bronte E.
Опубликовано: (Санкт-Петербург, Лань, 2013)
The Frontier Line
по: Conan D. A.
Опубликовано: (Санкт-Петербург, Лань, 2013)
по: Conan D. A.
Опубликовано: (Санкт-Петербург, Лань, 2013)
Properties of ZnO:Al, ZnO:Al–SiO2 Films Obtained in Sol Gel Process from Coating Solutions; Russian Physics Journal; Vol. 63, iss. 4
по: Kuznetsova S. A. Svetlana Anatoljevna
Опубликовано: (2020)
по: Kuznetsova S. A. Svetlana Anatoljevna
Опубликовано: (2020)
On the Line Business Education in the Digital Age /
Опубликовано: (2018)
Опубликовано: (2018)
First quantitative study of the high-resolution spectrum of 28SiD4 in the region of the v3 band: Line strengths and widths; Journal of Quantitative Spectroscopy and Radiative Transfer; Vol. 221
Опубликовано: (2018)
Опубликовано: (2018)
High resolution Fourier transform spectroscopy of HD16O: Line positions, absolute intensities and self broadening coefficients in the 8800–11,600 cm-1 spectral region; Journal of Quantitative Spectroscopy and Radiative Transfer; Vol. 133, Iss. 11
Опубликовано: (2012)
Опубликовано: (2012)
Схожие документы
-
An accurate and complete empirical line list for water vapor between 5850 and 7920 cm−1; Journal of Quantitative Spectroscopy and Radiative Transfer; Vol. 140
Опубликовано: (2014) -
Study of H216O and H218O absorption in the 16,460-17,200 cm-1 range using LED-based Fourier transform spectroscopy; Journal of Quantitative Spectroscopy and Radiative Transfer; Vol. 217
по: Mikhailenko S. N. Semen Nikolaevich
Опубликовано: (2018) -
Relaxation parameters of absorption lines of vibrationally excited HF molecule; Bulletin of the Tomsk Polytechnic University; Vol. 311, № 2
по: Stroinova V. N.
Опубликовано: (2007) -
Isotopic substitution shifts in methane and vibrational band assignment in the 5560–6200 cm-1 region; Journal of Quantitative Spectroscopy and Radiative Transfer; Vol. 110, № 12
Опубликовано: (2009) -
Efficiency of an increase in the radiation stability in various regions of the absorption spectrum of coatings based on TiO2 powders modified by SiO2 nanoparticles; Russian Physics Journal; Vol. 55, iss. 7
Опубликовано: (2012)