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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Vibrational-vibrational and vibrational-thermal energy transfers of CO_2 with N2 from MIPAS high-resolution limb spectra
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Vibrational-vibrational and vibrational-thermal energy transfers of CO_2 with N2 from MIPAS high-resolution limb spectra

机译:MIPAS高分辨率肢体光谱中N_2与CO_2的振动-振动和振动-热能传递

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摘要

We present a retrieval of several vibrational-vibrational (V-V) and vibrational-thermal (V-T) collisional rate coefficients affecting the populations of the CO_2 levels emitting at 10, 4.3 and 2.7 μm from high-resolution limb atmospheric spectra taken by Michelson Interferometer for Passive Atmospheric Sounding (MIPAS). This instrument has a high spectral resolution (0.0625 cm~(-1)) and a wide spectral coverage (from 685 to 2410 cm~(-1)) that allow measuring and discriminating among the many bands originating the atmospheric 4.3 μm radiance. Also its high sensitivity allows measuring the atmospheric limb emission in a wide altitude range, from 20 to 170 km in its middle and upper atmosphere modes, and hence obtain information on the temperature dependence of the collisional rates. In particular, we retrieve the rate coefficients and their temperature dependence in the 130–250 K range of the following processes: CO_2(v_d, v_3) + N_2 ? CO_2(v_d, v_3 - 1) + N_2(1) with vd = 2v_1 + v_2 = 2, 3, and 4; CO_2(v1, v2, l, 1, r) + M ? CO_2(v_1' , v_2', l′, 1, r′) + M with Δv_d = v_d' - vd = 0 and Δl = 0; and with Δv_d = 0 and Δl ≠ 0. In addition we have also retrieved the thermal relaxation of CO_2(v_3) into the v1 and v_2 modes, e.g., CO_2(v_d, v_3) + M ? CO_2(v_d' , v3 - 1) + M with Δv_d = 2–4 and Δv_3 = -1 and the efficiency of the excitation of N_2(1) by O(1D). All of them were retrieved with a much better accuracy than were known before. The new rates have very important effects on the atmospheric limb radiance in the 10, 4.3 and 2.7 μm spectral regions (5–8% at 4.3 μm) and allow a more accurate inversion of the CO_2 volume mixing ratio in the mesosphere and lower thermosphere from measurements taken in those spectral regions.
机译:我们从迈克尔逊干涉仪获取的无源高分辨率肢体大气光谱中检索了几个影响振动的(VV)和振动-热(VT)碰撞速率系数,这些系数影响了以10、4.3和2.7μm发射的CO_2水平的总体大气探测(MIPAS)。该仪器具有较高的光谱分辨率(0.0625 cm〜(-1))和较宽的光谱覆盖范围(从685到2410 cm〜(-1)),可以测量和辨别源自大气4.3μm辐射的多个波段。此外,它的高灵敏度允许在中高空模式下从20到170 km的宽海拔范围内测量大气肢体排放,从而获得有关碰撞率的温度依赖性的信息。特别是,我们在以下过程的130–250 K范围内检索速率系数及其温度依赖性:CO_2(v_d,v_3)+ N_2? CO_2(v_d,v_3-1)+ N_2(1),其中vd = 2v_1 + v_2 = 2、3和4; CO_2(v1,v2,l,1,r)+ M? CO_2(v_1′,v_2′,l′,1,r′)+ M,其中Δv_d= v_d′-vd = 0和Δl= 0;此外,我们还将CO_2(v_3)的热弛豫恢复为v1和v_2模式,例如,CO_2(v_d,v_3)+ M? Δv_d= 2-4和Δv_3= -1的CO_2(v_d',v3-1)+ M以及O(1D)激发N_2(1)的效率。检索所有这些数据的准确性比以前已知的要好得多。新的速率对10、4.3和2.7μm光谱区域中的大气肢体辐射具有非常重要的影响(4.3μm处为5–8%),并使中层和下层热层中的CO_2体积混合比更准确地反演。在那些光谱区域中进行的测量。

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