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1.
Absorption lines of 12C16O2 have been examined by using a tunable diode laser spectrometer in the region around (790 nm). The spectrometer sources are commercially available double heterostructure InGaAlAs tunable diode lasers (TDLs) operating in the “free-running” mode, which allowed the detection of the line positions within . The observed carbon dioxide absorption lines belong to the combination overtone 2ν2+5ν3 ro-vibrational band with intensities ranging around .  相似文献   

2.
Overtone absorption lines of 12CH4 have been examined by using a tunable diode laser (TDL) spectrometer in the region around (840 nm) where the combination overtone band ν1+3ν3 lies. The spectrometer sources are commercially available heterostructure GaAlAs TDLs operating in the “free-running” mode, which allowed the detection of the line positions within . The wavelength modulation spectroscopy (WMS) and the second harmonic detection technique permitted the measurements of minimum absorbances of the order of ?5×10-6. This allowed to observe the weakest lines of the band with absorption cross-sections of the order of ?2×10-25 cm2/molecule or /amagat. For some of them self-, air-, He- and H2-broadening coefficients have been obtained at room temperature.  相似文献   

3.
A tunable diode laser spectrometer has been employed to examine the 3rd overtone absorption lines of C2H4 at around 12 000 cm−1 (830 nm). The spectrometer sources are heterostructure AlGaAs tunable diode lasers operating “free-running”. By the aid of the wavelength modulation spectroscopy with the second harmonic detection technique and a Herriott type multipass cell 63 very weak absorption lines have been observed for the first time, with cross sections as low as 2 × 10−26 cm2/mol, equivalent to . The self-broadening coefficient has been measured for one of the most intense lines.  相似文献   

4.
The dyad bands of near 790 nm have been recorded with a continuous-wave cavity ring-down spectrometer. Two cold bands and the two associated hot bands are observed in this region. High sensitivity of the 1×10−10/cm level allows one to detect weak transitions with satisfied accuracy. The absolute line intensities have also been retrieved with an estimated accuracy of 2% for majority of the unblended lines. The vibrational transition dipole moment squared values and the empirical Herman-Wallis coefficients are presented for two cold bands. The comparison of the retrieved line positions and intensities with those given in the Carbon Dioxide Spectroscopic Databank shows clear deviation and indicates the empirical calculation can be further improved using the present spectroscopy data.  相似文献   

5.
The solid neon matrix isolated spectrum of CO2 are recorded in the 2–5 μm region. Natural and 13C or 18O enriched CO2 samples were used and the 1 + ν3 (n = 0, 1, 2) series bands of different CO2 isotopologues have been observed. The solid neon matrix shift due to Fermi-resonance of bands within the same vibrational polyad is analyzed.  相似文献   

6.
Using a tunable diode-laser spectrometer, N2-broadening coefficients have been measured for 15 lines in the ν3 band of C32S2 at room and low temperatures (298, 273.2, 248.2, 223.2, and 198.2 K). These lines with J values ranging from 2 to 62 are located in the spectral range 1519-1545 cm−1. The collisional widths are obtained by fitting each measured spectral line with a Voigt and a Rautian lineshape model and for a few lines we also used a Galatry model. From these results, we have determined the n parameter of the temperature dependence of each broadening coefficient. A semiclassical calculation of these broadenings has been performed by considering in addition to the main electrostatic quadrupole-quadrupole interaction an anisotropic dispersion contribution leading to satisfactory results at all temperatures and providing the n temperature dependence parameter in good agreement with the experimental determination.  相似文献   

7.
With a diode-laser spectrometer, we have measured self-broadening coefficients of 42 lines of the P-, Q- and R-branches in the ν4 fundamental band of CH4 at room temperature, with J values ranging between 1 and 12. For the determination of self-broadening parameters, we have fitted to the experimental lineshape two theoretical line profiles: the Voigt profile taking into account Doppler and collisional broadenings, and the hard collision model developed by Rautian and Sobel’man incorporating Dicke narrowing.  相似文献   

8.
The absolute line intensities of the Fermi triad 2003i-00001 (i = 1, 2, 3) of 12C16O2 and 13C16O2 isotopic species of carbon dioxide were retrieved from Fourier-transform spectra recorded at Doppler limited resolution in the region 9200-9700 cm−1. The accuracy of the line intensity determination is estimated to be better than 15% for most lines. The vibrational transition dipole moments squared and Herman-Wallis coefficients have been determined. The global fittings of the observed line intensities within the framework of the effective operators method have been performed. The fitting results reproduce the data within experimental uncertainty.  相似文献   

9.
A diode laser spectrometer was used in the Groupe de Spectrométrie Moléculaire et Atmosphérique of Reims (France) to study CO2 line intensities, self-broadening coefficients and air-pressure-broadening coefficients near 2.063 μm. The spectral region ranging from 4843 to 4848 cm−1, which is suitable for the measurement of atmospheric carbon dioxide (CO2) mixing ratios was studied using a new generation-commercial diode laser from Nanoplus. Three lines of the (20°1)III←(0 0 0) band of CO2 have been studied. The results of intensity measurements and self-broadening coefficients are compared with previous determinations and available databases. Furthermore, the air-broadening coefficients for these transitions are also reported and analyzed. Finally, these new parameters are used for the measurement of atmospheric CO2 mixing ratio with the 2 μm heterodyne differential absorption Lidar from the Laboratoire de Météorologie Dynamique at Palaiseau (France). These new parameters demonstrate a dramatic improvement of the retrieved atmospheric CO2 concentrations.  相似文献   

10.
The absorption spectrum of the 18O enriched carbon dioxide has been recorded at Doppler limited resolution with a Fourier transform spectrometer in the spectral range 3800-8500 cm−1. Seventeen cold bands (14Σ-Σ and 3Σ-Π) and nine hot bands (9Π-Π) of 12C18O2, nineteen cold bands (18Σ-Σ and 1Σ-Π) and eighteen hot bands (6Σ-Σ, 9Π-Π and 3Δ-Δ) of 16O12C18O have been observed. Among them, 14 12C18O2 bands and 12 16O12C18O bands are observed for the first time. The spectroscopic parameters Gv, Bv, and centrifugal distortion constants, have been determined for all observed bands. Effective Hamiltonian parameters for the 12C18O2 isotopic species are retrieved from the global fitting of the observed line positions presented in this paper and collected from the literature. As the result, 65 obtained effective Hamiltonian parameters reproduce 5443 observed line positions of 73 12C18O2 bands with RMS = 0.00145 cm−1.  相似文献   

11.
A laser spectrometer based on a continuous-wave thermoelectrically-cooled distributed feedback quantum cascade laser at ∼2308 cm−1 has been evaluated for measurement of 13CO2/12CO2 isotopic ratio (δ13C) changes in exhaled breath samples and in CO2 gas flows in the concentration range 1-5%. Mid-infrared CO2 absorption spectra were measured in a 54.2-cm long optical cell using balanced detection whereby the beam passing through the cell was ratioed against a reference beam split-off from the main beam before the cell. Signal-to-noise ratios (SNR) were estimated for CO2 concentration measurements determined from either absorption peak amplitude or absorption peak area. The highest SNR were achieved in the measurements based upon a fitted absorption peak area. Typical short-term δ13C precisions of 1.10/00 (1-s integration time) and 0.50/00 (8-12-s integration time) were estimated from the two-sample (Allan) variance plots of data recorded in the optical cell at a pressure of 20 Torr and with no active temperature stabilization of the cell and gas flow. The best precision of 0.120/00 was achieved for averaging 80 successive 1-s integration time measurements.  相似文献   

12.
A tunable diode laser spectrometer has been employed to examine the unknown overtone absorption lines of NH3 around (760 nm). The spectrometer sources are commercially available heterostructure AlGaAs tunable diode lasers operating in the “free-running” mode. The detection of the lines has been possible by the use of the wavelength modulation spectroscopy and the second harmonic detection technique. A special algorithm has been used in order to fit the highly modulated absorption lines. The weakest observed resonances have absorption cross sections on the order of ?/molecule or ?/amagat. For some of the more intense lines self-, air-, N2-, He- and H2-broadening coefficients have been obtained at room temperature and also some shifting coefficients have been measured.  相似文献   

13.
In this paper, we present a line profile study of the R (0) line in the ν4 band of methane diluted in nitrogen and oxygen, from room temperature to 153 K. The measurements were performed over a total pressure range from 14 to 128 mbar. The collisional broadening and narrowing (Dicke effect) coefficients are derived from a fit of the experimental spectra by using the soft and hard collision models, taking into account the Dicke effect. For higher pressures, we have fitted the data with a model taking into account simultaneously the Dicke narrowing and the speed dependence effect. Finally, we have deduced the parameter n of the temperature dependence (inverse power law) of the broadening coefficients for the CH4-N2 and CH4-O2 gas mixtures.  相似文献   

14.
Absolute line intensities of 13C16O2 were retrieved from high-resolution Fourier transform spectra recorded in the region 3090-3920 cm−1. The uncertainty of the line intensity determination is estimated to be between 3 and 5% for the strong lines. The global fittings of the observed line intensities within the framework of the effective operators approach have been performed, reaching the experimental accuracy. A comparison of newly measured line intensities with those found in the HITRAN database is presented.  相似文献   

15.
Line positions and strengths of 12C16O2 were measured between 4550 and 7000 cm−1 using near infrared absorption spectra recorded at 0.01-0.013 cm−1 resolution with the McMath-Pierce Fourier transform spectrometer located at the National Solar Observatory at Kitt Peak, Arizona. These were retrieved from 42 laboratory spectra obtained at room temperature with five absorption cells having various optical path lengths (from 0.1 to 409 m) filled with natural and enriched samples of CO2 at pressures ranging from 2 to 581 Torr. In all, band strengths and Herman-Wallis-like F-factor coefficients were determined for 58 vibration-rotation bands from the least-squares fits of over 2100 unblended line strengths; strengths of 34 of these bands had not been previously reported. Band strengths in natural abundance generally ranged from 3.30 × 10−20 to 2.8 × 10−25 cm−1/molecule cm−2 at 296 K. It was found that the high J transitions (J′ ? 61) of the 20012 ← 00001 band centered at 4977.8347 cm−1 are perturbed, affecting both measured positions and strengths. Two other interacting bands, 21113e ← 01101e and 40002e ← 01101e, were also analyzed using degenerate perturbation theory. Comparisons with corresponding values from the literature indicate that absolute accuracies better than 1% and precisions of 0.5% were achieved for the strongest bands.  相似文献   

16.
通过具有高灵敏度、非侵入式等特性的可调谐二极管激光吸收光谱技术对发动机气缸工作过程等高温高压燃烧环境进行实时在线检测,是了解其内部燃烧过程进而研发高效发动机的重要手段之一。作为一种重要的温室气体和化石燃料燃烧的主要产物,二氧化碳对于了解燃烧过程具有重要的意义。为了寻找一种能够对高温高压燃烧过程中的二氧化碳浓度进行快速检测的方法,利用工作在室温条件下的近红外可调谐二极管激光器作为光源,以二氧化碳位于5 006.140 cm-1处的跃迁作为传感谱线,结合固定波长的吸收光谱调制技术,通过该CO2谱线的一次谐波归一化的二次谐波信号峰值实现对高温高压环境中CO2浓度测量,建立了一种可用于高温高压环境下的组份浓度的测量方法,通过实验验证得出该方法在5 atm压力、500 K温度下和10 atm压力、1 000 K温度下对于CO2浓度测量的平均标准偏差为3.99%;另外还对实验中所得CO2直接吸收及二次谐波信号进行了分析,得到了其吸收光谱在高温高压环境下的特性。  相似文献   

17.
The absolute line intensities of 13C16O2 were retrieved from Fourier-transform spectra recorded in the region 4200-8500 cm−1. The accuracy of the line intensity determination is estimated to be 5% or better for most lines and about 10% for weak ones. The vibrational transition dipole moments squared and Herman-Wallis coefficients have been determined. The global fittings of the observed line intensities within the framework of the effective operators approach have been performed. As the result of the fittings, most line intensities are reproduced within the experimental accuracy. The comparison between the new measured data and the HITRAN database are also carried out.  相似文献   

18.
Using Fourier transform spectra and a multispectrum fitting procedure, 271 absolute line intensities of 12C16O2 have been measured around 1.6 μm, for the three cold bands 30014-00001, 30013-00001, and 30012-00001, and for the two hot bands 31113-01101 and 31112-01101, extending from 6035 to 6380 cm−1. Accuracies are on the average 3 and 5% for cold and hot bands, respectively. Vibrational transition dipole moments and Herman-Wallis coefficients are reported for each band. Comparisons are made with previous experimental results and with data available in the HITRAN database and the Carbon Dioxide Spectroscopic Databank (CDSD).  相似文献   

19.
Using a tunable diode-laser spectrometer, we have measured H2-broadening coefficients of PH3 at low temperature (173.2 K) for 27 lines in the QR branch of the ν2 band and in the PP and RP branches of the ν4 band. The recorded lines with J values ranging from 2 to 11 and K from 0 to 9 are located between 1016 and 1093 cm−1. The collisional widths are determined by fitting each spectral line with a Voigt profile and a speed-dependent Rautian profile which provides slightly larger broadening coefficients than the Voigt model. These coefficients have also been calculated on the basis of a semiclassical model of interacting linear molecules by considering an atom-atom Lennard-Jones potential in addition to the weak electrostatic contributions. Except for three QR(J,K) lines, where K = J, the calculated broadening coefficients are in good agreement with the experimental data. By comparing the results obtained at room and low temperatures, the temperature dependence of linewidths has been determined both theoretically and experimentally.  相似文献   

20.
An experimental database for the 13C16O2, 16O13C18O, 16O13C17O, 13C18O2 and 17O13C18O isotopologues of carbon dioxide has been constructed on the basis of the high-sensitivity absorption spectrum of carbon dioxide with 99% enrichment in 13C recorded by CW-cavity ring down spectroscopy (CW-CRDS) between 5851 and 7045 cm−1. As a result of the achieved sensitivity (typical noise equivalent absorption αmin∼2-5×10−10 cm−1) combined with the high linearity and dynamics (more than four decades) of the CW-CRDS technique, the amount of spectroscopic information contained in these spectra was considerable. A total of 8639 transitions of the 13C16O2, 16O13C18O, 16O13C17O, 13C18O2 and 17O13C18O isotopologues with line strength as low as 5×10−29 cm/molecule were assigned. They belong to a total of 150 bands, while less than 20 bands were previously reported by Fourier transform spectroscopy. The excellent agreement between the predictions of the effective operators model and the observations has allowed using an automatic search program to assign the weaker lines observed in the congested spectrum. The spectroscopic parameters of the vibrational upper levels were obtained from a fit of the measured line positions. A number of resonance interactions were observed; in particular, several occurrences of interpolyad anharmonic couplings not included in the polyad model of effective Hamiltonian, were found to affect a few bands of the 16O13C18O and 16O13C17O isotopologues. In the list of 8639 transitions, which are provided as Supplementary material, line positions are experimental values (typical uncertainty in the order of 1×10−3 cm−1), while line strengths were calculated at 296 K by using the effective operators approach (typical uncertainty in the order of 5%). In the case of the 13C16O2 isotopologue, the reported transitions represent 99.65% of the total absorbance in the region considered.  相似文献   

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