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1.
We have measured the pressure broadening coefficients of a number of rotation-vibration lines in the 0–4 through 0–7 overtone bands of HCl utilizing a Fourier transform spectrometer and a 409 m path length White cell. These data, when included with previous measurements on the fundamental and lower overtone bands, show a systematic variation of pressure broadening with increasing overtone band. This result reflects a change in the collision dynamics between molecules in the upper state of the transition with ground state molecules.  相似文献   

2.
A long-pathlength variable temperature cell has been used to study three hydrogen chloride 0–1 vibration-rotational lines, P(7), P(8), and P(9) which were broadened by He, Ar, N2, O2, and CO at room temperature and by Ar at low temperatures down to 190 K. The method employed to extract the linewidths is the equivalent width method. The temperature dependence of the resulting cross sections for the HClAr broadened lines is similar to that recently found for other argon broadened HCl infrared and microwave lines. The results reported here (for high J lines) complement the other results (for low J lines) and together seem to constitute enough new data for further theoretical attempts at describing the process of collisional broadening in general, and the broadening of HCl by argon in particular.  相似文献   

3.
We have measured, at high resolution (0.024cm-1), the linewidths and shifts in the fundamental band of H35Cl broadened by argon (up to 5 bars) and xenon (up to 4 bars) at low temperatures (between 298 and 163 K). The experimental results have been compared with calculated data derived from the Anderson-Tsao-Curnutte theory using the Tipping-Herman potential.  相似文献   

4.
Fourier absorption spectra of HCl and HF at room temperature permitted to measure 87 absolute wavenumbers. The absolute observed position of the P(6) line of the 1-0 band of HF is not in agreement with a recent heterodyne determination [3]. It is found equal to 110 725 739 ± 7.5 MHz.  相似文献   

5.
Fourier absorption spectra of HCl and HF measured at room temperature and low pressures were found to show evidence of pressure-induced shifts of the spectral lines at gas pressures of only 10 torr. Self-induced shifts were measured for the HF 2-0 band and for the H35Cl and H37 2-0 bands. There were also measured in the same spectra shifts in the HF 2-0 band due to HCl and shifts in both HCl bands due to HF, with indications of shift oscillation due to near-resonant dipole-dipole interactions between HCl and HF. Separate measurements were made of pressure-induced shifts in the HF 1-0 and 2-0 bands and in both isotopic HCl bands, using separately argon, neon, nitrogen and carbon dioxide as the perturbing gases.  相似文献   

6.
Pure rotational spectra of the three molecules 32SF535Cl, 32SF537Cl, and 34SF535Cl in their ground vibrational states have been observed up to 300 GHz (8 < J < 80). Molecular parameters have been computed with good accuracy for the three isotopic species. The “K-type” splitting characteristic of molecules belonging to the C4v symmetry group has been clearly seen and measured.  相似文献   

7.
Broadening and shifting of carbonyl sulfide (OCS) rotational spectrum lines by pressure of N2, O2 and OCS were accurately studied in the frequency range 24–850 GHz at room temperature using a spectrometer with radio-acoustic detection of absorption. Rotational dependences of collisional widths of OCS spectrum lines were determined by a simple empirical polynomial fit of experimental data. Experimental uncertainties were analyzed. Results of supplementary test measurements of self-broadening of rotational OCS lines in the ν2 excited vibrational state and carbon monoxide (CO) lines in the ground vibrational state are presented. Comparison of the obtained results with previously known measurements and theoretical calculations is given. The performed work allows for the first time development of accurate gaseous etalon of absorption for atmospheric applications and laboratory use, covering continuously the whole millimeter- and submillimeter-wave range.  相似文献   

8.
We present experimental data on the previously unknown line broadening and shifting coefficients in the (2 ← 0) overtone vibration-rotation bands of the HBr and HI molecules in mixtures with several rare gases. The vibrational dependence of the isotropic and anisotropic components of the binary interaction potential is probed by separating the measured line shifts into parts symmetric and asymmetric in the line number m and by comparing with the previously published similar data for the fundamental bands of the same molecules. It is shown that the line shifts are dominated by the vibrational dependence of the isotropic potential. A linear correlation is found between the asymptotic values of the symmetric shifts in the overtone bands for all HX-Rg (X = F, Cl, Br, I) pairs and the respective C6 long-range potential energy constants. Line broadening parameters in the overtone band of pure HBr are also reported.  相似文献   

9.
Absolute strength measurements have been performed for the Ep = 580 and 588 keV 32S(p,γ)33Cl, Ep = 1214keV34S(p,γ)35Cl and Ep = 633 and 744 keV27Al(p,γ)28Si resonances with a Ge(Li) detector. Results are discussed with regard to the decay of isobaric analog resonances in 35Cl and 37Cl.  相似文献   

10.
The γ-radiation following capture of non-polarized and polarized thermal neutrons in 35Cl has been investigated. Of the 420 γ-rays ascribed to the 35Cl(n,γ)36Cl reaction, 236 have been placed in a 36Cl decay scheme. The branching ratios and the excitation energies (with 0.04–0.9 keV errors) of 72 bound states have been determined. Unambiguous spin assignments are given for 11 levels. The multipole mixing ratios for some primary γ-ray transitions have been determined. There exists a significant correlation between (d, p) stripping strengths and (n, γ) reduced primary transition probabilities for transitions to ln(d, p) = 0 levels.  相似文献   

11.
By using a diode laser spectrometer based on a commercial heterostructure diode laser operating in free-running mode, line shape parameters of some ammonia ro-vibrational overtones at 790 nm have been measured at room temperature. These weak absorption lines have been detected by using the wavelength modulation spectroscopy technique with second-harmonic detection. The broadening and shifting coefficients have been obtained for ten absorption lines by fitting the collected second-harmonic absorption features and varying the pressure of different buffer gases. Received 13 February 2002 / Received in final form 18 September 2002 Published online 17 December 2002 RID="a" ID="a"e-mail: alex@ifam.pi.cnr.it  相似文献   

12.
The temperature dependence of pressure broadening of 134 rovibrational transitions of several branches in the ν4 and 2ν2 bands of ammonia perturbed by H2 and N2 has been measured using a high-resolution Fourier transform spectrometer. The temperature range covered during the experiments was between 235 and 296 K. The pressure-broadening linewidths were obtained using the method of multipressure fitting to the measured shapes of the lines. These broadenings were also calculated using a semiclassical model leading to a reasonable agreement with the observations and reproduces well the strong systematic experimental J and K quantum number dependencies. The retrieved values of the linewidths, along with those previously determined from the spectra at room temperature, were used to derive the temperature dependence of both H2 and N2 broadening of NH3 lines. The broadening coefficients were shown to fit closely the well-known exponential law. For both experimental and theoretical results, the temperature exponent n has been obtained. Careful inspection of the experimental values shows that, contrary to the linewidths, the coefficient n is nearly K independent within each J multiplet. Also for a given J it does not seem to exhibit any noticeable variation with the type of rotational transition. On the other hand, the calculated n values exhibit a strong J and K systematic dependencies. n increases with K for a given J, decreases with J for a given K and are independent of the type of rotational transition.  相似文献   

13.
Strengths of individual lines in the v1 fundamental of methyl chloride have been measured at low pressure and at 296.35 K using a Fourier transform interferometer. The band strengths Sv0 obtained by fitting these measurements are 85.8±1.0 and 86.6±1.0 cm-2 atm-1 for 12CH335Cl and 12CH337Cl, respectively. The Q3-branch appears to be useful for atmospheric detection of methyl chloride.  相似文献   

14.
The total fusion cross section for the system 35Cl+48Ti was measured at Elab(35Cl) = 104 MeV. Evaporation residues are identified by a time-of-flight mass spectrometer using a pulsed beam and solid state fission detectors. In addition, the mass yields of evaporation residues were measured by activation analysis. The results are compared to statistical model predictions.  相似文献   

15.
The B3Π(0+) → X1Σ+ band system of Cl2, excited by the recombination of ground state Cl2P32 atoms at total pressures near 2 Torr, has been rotationally analyzed in the range 6300–9900 Å. About 30 bands, with 0 ≤ v′ ≤ 6 and 5 ≤ v″ ≤ 14, were investigated, mostly for both 35Cl35Cl and 35Cl37Cl. The band origins and rotational constants for the B state were obtained with the help of the known constants for the ground state. The principal molecular constants (cm?1) for the B3Π(0+) state of 35Cl35Cl are as follows: Te′ = 17 817.67(3); ωe′ = 255.38(3); ωexe′ = 4.59(1); ωeye′ = ?0.038(8); De′ = 3341.17(14); Be′ = 0.16313(3); αe′ = 2.42(3) × 10?3; γe′ = ?5.7(7) × 10?5. The equilibrium internuclear separation is 2.4311(2) Å. The results of Briggs and Norrish on a transient absorption spectrum of Cl2 assigned as 0g+ ← B3Π(0+) are reinterpreted with the present constants.  相似文献   

16.
The width and shift parameters for both self-broadened and foreign-gas-broadened lines in the ammonia inversion spectrum have been measured. A dependence on the quantum numbers (J,K) is found for shift parameters, but not for width parameters.  相似文献   

17.
The ν4 infrared and Raman bands of CH3Cl were analyzed simultaneously. A direct fit yielded a complete set of constants for CH335Cl, including A0 = 5.20530 ± 0.00010 cm?1 and DK = (8.85 ± 0.13) × 10?5cm?1. For CH337Cl an incomplete set of constants was obtained from the infrared band, and A0 = 5.2182 ± 0.0010 cm?1 was estimated by curve fitting of the Raman spectrum. The resulting equilibrium structure is r(CH) = 1.0854 ± 0.0005 A?, r(CCl) = 1.7760 ± 0.0003 A?, and <(HCH) = 110°.35 ± 0°.05.  相似文献   

18.
The A 2Σ+-X 2Π emission spectrum of HCl+ has been measured and analyzed for four isotopic combinations. These analyses extend previous work and provide rotational constants for the v = 0–2 levels of the ground state and for the v = 0–9 levels of the excited state. RKR potentials have been determined for both states, although the upper state could not be fitted precisely to such a model. Calculated relative intensities based on these potentials demonstrated that the electronic transition moment must change rapidly with lower state vibrational quantum number. Although considerable caution should be exercised in applying the concept of equilibrium constants to the A 2Σ+ state, the following are the best estimates of these constants (in cm?1) for the X 2Π state of H35Cl+: Be = 9.9406, ωe = 2673.7, Ae = ? 643.7, and re = 1.315 A?. For the A 2Σ+ state of H35Cl: Te = 28 628.08, Be ~ 7.505, ωe ~ 1606.5, and re = 1.514 A?.  相似文献   

19.
20.
We report a measurement of the forward-backward asymmetry in the radiative capture of polarized cold neutrons in the reaction 35Cl(n, γ)36Cl where 36Cl is in the ground state. The measured value of the asymmetry is a = (1.57 ± 0.531) × 10?4. We deduce the mixing between the 2+ capture level and the neighboring 2? levelto be 〈2?¦Hp.v.¦2+〉 = ?0.25 ± 0.08 eV before corrections. A measurement of the integral asymmetry of all γ-rays in the neutron capture by 35Cl leads to agreement with measurements at Leningrad.  相似文献   

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