• Acta Optica Sinica
  • Vol. 45, Issue 6, 0628011 (2025)
Zhihua Wang, Daoqi Wang, Haotian Li, Chuanhang Wu..., Jiarui Su, Kuijun Wu and Weiwei He*|Show fewer author(s)
Author Affiliations
  • School of Physics and Electronic Information, Yantai University, Yantai 264005, Shandong , China
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    DOI: 10.3788/AOS241376 Cite this Article Set citation alerts
    Zhihua Wang, Daoqi Wang, Haotian Li, Chuanhang Wu, Jiarui Su, Kuijun Wu, Weiwei He. Retrieval of Mesospheric Ozone Profiles Based on Airglow Radiation in O2 Infrared Atmospheric Band[J]. Acta Optica Sinica, 2025, 45(6): 0628011 Copy Citation Text show less
    Photochemical reaction process of O2(a1Δg) airglow
    Fig. 1. Photochemical reaction process of O2(a1Δg) airglow
    Contributions of different generation mechanisms to O2(a1Δg) airglow
    Fig. 2. Contributions of different generation mechanisms to O2(a1Δg) airglow
    Flow chart of retrieval of ozone profile from limb radiance
    Fig. 3. Flow chart of retrieval of ozone profile from limb radiance
    Geometric perspective of satellite limb observation
    Fig. 4. Geometric perspective of satellite limb observation
    O2 airglow spectral radiation intensity at different tangent heights. (a) Initial spectral intensities of airglow radiation in O2(a1∆g) band at different limb heights observed by SCIAMACHY instrument; (b) spectral intensity of pure airglow radiation in O2(a1∆g) band at different limb heights after subtracting atmospheric scattering background; (c) radiation efficiencies of O2(a1∆g) band airglow spectra of different target layers after “onion peeling” algorithm; (d) initial spectral intensities of airglow radiation in O2(b1∑g+) band at different limb heights observed by SCIAMACHY instrument; (e) spectral intensity of pure airglow radiation in O2(b1∑g+) band at different limb heights after subtracting atmospheric scattering background; (f) radiation efficiencies of O2(b1∑g+) band airglow spectra of different target layers after “onion peeling” algorithm
    Fig. 5. O2 airglow spectral radiation intensity at different tangent heights. (a) Initial spectral intensities of airglow radiation in O2(a1g) band at different limb heights observed by SCIAMACHY instrument; (b) spectral intensity of pure airglow radiation in O2(a1g) band at different limb heights after subtracting atmospheric scattering background; (c) radiation efficiencies of O2(a1g) band airglow spectra of different target layers after “onion peeling” algorithm; (d) initial spectral intensities of airglow radiation in O2(b1g+) band at different limb heights observed by SCIAMACHY instrument; (e) spectral intensity of pure airglow radiation in O2(b1g+) band at different limb heights after subtracting atmospheric scattering background; (f) radiation efficiencies of O2(b1g+) band airglow spectra of different target layers after “onion peeling” algorithm
    Vertical distributions of number densities of O2 molecules in b1∑g+ and a1∆g states at different latitudes. (a) Vertical distributions of molecular number densities in O2(b1∑g+) state; (b) vertical distributions of molecular number densities in O2(a1∆g) state
    Fig. 6. Vertical distributions of number densities of O2 molecules in b1g+ and a1g states at different latitudes. (a) Vertical distributions of molecular number densities in O2(b1g+) state; (b) vertical distributions of molecular number densities in O2(a1g) state
    Comparison results, mean, absolute residual, and relative deviation of SCIAMACHY ozone profile retrieval results at intersection of time and space with SABER ozone product data. (a) March 2, 2011; (b) June 1, 2011; (c) September 12, 2011; (d) November 22, 2011
    Fig. 7. Comparison results, mean, absolute residual, and relative deviation of SCIAMACHY ozone profile retrieval results at intersection of time and space with SABER ozone product data. (a) March 2, 2011; (b) June 1, 2011; (c) September 12, 2011; (d) November 22, 2011
    Latitudinal comparisons of SCIAMACHY ozone mixing ration retrieval results with MIPAS ozone product data at the same observation orbit. (a) SCIAMACHY ozone mixing ration retrieval results in latitude direction on April 7, 2011; (b) MIPAS ozone mixing ration in latitude direction on April 7, 2011; (c) relative deviation of ozone mixing ration between SCIAMACHY and MIPAS in latitude direction on April 7, 2011; (d) SCIAMACHY ozone mixing ration retrieval results in latitude direction on November 22, 2011; (e) MIPAS ozone mixing ration in latitude direction on November 22, 2011; (f) relative deviation of ozone mixing ration between SCIAMACHY and MIPAS in latitude direction on November 22, 2011
    Fig. 8. Latitudinal comparisons of SCIAMACHY ozone mixing ration retrieval results with MIPAS ozone product data at the same observation orbit. (a) SCIAMACHY ozone mixing ration retrieval results in latitude direction on April 7, 2011; (b) MIPAS ozone mixing ration in latitude direction on April 7, 2011; (c) relative deviation of ozone mixing ration between SCIAMACHY and MIPAS in latitude direction on April 7, 2011; (d) SCIAMACHY ozone mixing ration retrieval results in latitude direction on November 22, 2011; (e) MIPAS ozone mixing ration in latitude direction on November 22, 2011; (f) relative deviation of ozone mixing ration between SCIAMACHY and MIPAS in latitude direction on November 22, 2011
    Consistency analysis of SCIAMACHY ozone mixing ratioretrieval results with MIPAS ozone product data. (a) 47073 track on March 2, 2011; (b) 48381 track on June 1, 2011; (c) 49861 track on September 12, 2011; (d) 50881 track on November 22, 2011
    Fig. 9. Consistency analysis of SCIAMACHY ozone mixing ratioretrieval results with MIPAS ozone product data. (a) 47073 track on March 2, 2011; (b) 48381 track on June 1, 2011; (c) 49861 track on September 12, 2011; (d) 50881 track on November 22, 2011
    Statistical analysis of SCIAMACHY ozone mixing ratioretrieval results with MIPAS ozone product data in terms of horizontal and vertical. (a) Latitude coverage percentage; (b) height coverage
    Fig. 10. Statistical analysis of SCIAMACHY ozone mixing ratioretrieval results with MIPAS ozone product data in terms of horizontal and vertical. (a) Latitude coverage percentage; (b) height coverage
    Zhihua Wang, Daoqi Wang, Haotian Li, Chuanhang Wu, Jiarui Su, Kuijun Wu, Weiwei He. Retrieval of Mesospheric Ozone Profiles Based on Airglow Radiation in O2 Infrared Atmospheric Band[J]. Acta Optica Sinica, 2025, 45(6): 0628011
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