Decade-Long Ozone Profile Record From Suomi NPP OMPS Limb Profiler: Assessment of Version 2.6 Data

IF 2.9 3区 地球科学 Q2 ASTRONOMY & ASTROPHYSICS Earth and Space Science Pub Date : 2024-09-18 DOI:10.1029/2024EA003707
N. A. Kramarova, P. Xu, J. Mok, P. K. Bhartia, G. Jaross, L. Moy, Z. Chen, S. Frith, M. DeLand, D. Kahn, G. Labow, J. Li, E. Nyaku, C. Weaver, J. Ziemke, S. Davis, Y. Jia
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Abstract

We evaluate a decadal ozone profile record derived from the Suomi National Polar-orbiting Partnership (SNPP) Ozone Mapping and Profiler Suite (OMPS) Limb Profiler (LP) satellite instrument. In 2023, the OMPS LP data were re-processed with the new version 2.6 retrieval algorithm that combines measurements from the ultraviolet (UV) and visible (VIS) parts of the spectra. It employs the second order Tikhonov regularization to retrieve a single vertical ozone profile between 12.5 km (or cloud tops) and 57.5 km with a vertical resolution of about 1.9–2.5 km between 20 and 55 km. The algorithm uses radiances measured at six UV ozone-sensitive wavelengths (295, 302, 306, 312, 317, and 322 nm) paired with 353 nm, and one VIS wavelength at 606 nm combined with 510 and 675 nm to form a triplet. Each wavelength pair or triplet is used over a limited range of tangent altitudes where the sensitivity to ozone change is strongest. A new aerosol correction scheme was implemented based on a gamma-function particle size distribution. In addition, numerous calibration changes that affected ozone retrievals were applied to measured LP radiances, including updates in altitude registration, radiometric calibration, stray light, and spectral registration. The key version 2.6 enhancement is the improved stability of the LP ozone record confirmed by the reduction in relative drifts between LP ozone and correlative measurements, linked previously to a drift in the version 2.5 LP altitude registration.

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来自 Suomi NPP OMPS 肢端剖面仪的十年臭氧剖面记录:2.6 版数据评估
我们对 Suomi 国家极轨伙伴关系(SNPP)臭氧测绘和剖析套件(OMPS)肢体剖析器(LP)卫星仪器生成的十年臭氧剖面记录进行了评估。2023 年,使用新的 2.6 版检索算法对 OMPS LP 数据进行了重新处理,该算法结合了光谱中紫外线(UV)和可见光(VIS)部分的测量结果。该算法采用二阶 Tikhonov 正则化来检索 12.5 千米(或云顶)至 57.5 千米之间的单一垂直臭氧剖面,20 至 55 千米之间的垂直分辨率约为 1.9-2.5 千米。该算法使用六个紫外线臭氧敏感波长(295、302、306、312、317 和 322 nm)与 353 nm 配对测量的辐射量,以及一个 VIS 波长(606 nm)与 510 和 675 nm 组合形成的三重波长。每个波长对或三重波长对臭氧变化的敏感性最强的切线高度范围有限。根据伽马函数粒径分布,采用了新的气溶胶校正方案。此外,许多影响臭氧检索的校准变化也被应用于测量的 LP 辐射,包括高度登记、辐射校准、杂散光和光谱登记的更新。2.6 版的主要改进是提高了 LP 臭氧记录的稳定性,减少了 LP 臭氧和相关测量之间的相对漂移,这与 2.5 版 LP 高度登记中的漂移有关。
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来源期刊
Earth and Space Science
Earth and Space Science Earth and Planetary Sciences-General Earth and Planetary Sciences
CiteScore
5.50
自引率
3.20%
发文量
285
审稿时长
19 weeks
期刊介绍: Marking AGU’s second new open access journal in the last 12 months, Earth and Space Science is the only journal that reflects the expansive range of science represented by AGU’s 62,000 members, including all of the Earth, planetary, and space sciences, and related fields in environmental science, geoengineering, space engineering, and biogeochemistry.
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