Literature DB >> 31921372

The CALIPSO Version 4 Automated Aerosol Classification and Lidar Ratio Selection Algorithm.

Man-Hae Kim1, Ali H Omar2, Jason L Tackett3, Mark A Vaughan2, David M Winker2, Charles R Trepte2, Yongxiang Hu2, Zhaoyan Liu3, Lamont R Poole3, Michael C Pitts2, Jayanta Kar3, Brian E Magill3.   

Abstract

The Cloud-Aerosol Lidar with Orthogonal Polarization (CALIOP) version 4.10 (V4) level 2 aerosol data products, released in November 2016, include substantial improvements to the aerosol subtyping and lidar ratio selection algorithms. These improvements are described along with resulting changes in aerosol optical depth (AOD). The most fundamental change in V4 level 2 aerosol products is a new algorithm to identify aerosol subtypes in the stratosphere. Four aerosol subtypes are introduced for the stratospheric aerosols: polar stratospheric aerosol (PSA), volcanic ash, sulfate/other, and smoke. The tropospheric aerosol subtyping algorithm was also improved by adding the following enhancements: (1) all aerosol subtypes are now allowed over polar regions, whereas the version 3 (V3) algorithm allowed only clean continental and polluted continental aerosols; (2) a new "dusty marine" aerosol subtype is introduced, representing mixtures of dust and marine aerosols near the ocean surface; and (3) the "polluted continental" and "smoke" subtypes have been renamed "polluted continental/smoke" and "elevated smoke", respectively. V4 also revises the lidar ratios for clean marine, dust, clean continental, and elevated smoke subtypes. As a consequence of the V4 updates, the mean 532 nm AOD retrieved by CALIOP has increased by 0.044 (0.036) or 52 % (40 %) for nighttime (daytime). Lidar ratio revisions are the most influential factor for AOD changes from V3 to V4, especially for cloud-free skies. Preliminary validation studies show that the AOD discrepancies between CALIOP and AERONET/MODIS (ocean) are reduced in V4 compared to V3.

Entities:  

Year:  2018        PMID: 31921372      PMCID: PMC6951257          DOI: 10.5194/amt-11-6107-2018

Source DB:  PubMed          Journal:  Atmos Meas Tech        ISSN: 1867-1381            Impact factor:   4.176


  6 in total

1.  Extinction-to-backscatter ratio of Asian dust observed with high-spectral-resolution lidar and Raman lidar.

Authors:  Zhaoyan Liu; Nobuo Sugimoto; Toshiyuki Murayama
Journal:  Appl Opt       Date:  2002-05-20       Impact factor: 1.980

2.  Large volcanic aerosol load in the stratosphere linked to Asian monsoon transport.

Authors:  Adam E Bourassa; Alan Robock; William J Randel; Terry Deshler; Landon A Rieger; Nicholas D Lloyd; E J Ted Llewellyn; Douglas A Degenstein
Journal:  Science       Date:  2012-07-06       Impact factor: 47.728

3.  Midlatitude lidar backscatter to mass, area, and extinction conversion model based on in situ aerosol measurements from 1980 to 1987.

Authors:  H Jäger; D Hofmann
Journal:  Appl Opt       Date:  1991-01-01       Impact factor: 1.980

4.  CALIPSO lidar ratio retrieval over the ocean.

Authors:  Damien Josset; Raymond Rogers; Jacques Pelon; Yongxiang Hu; Zhaoyan Liu; Ali Omar; Peng-Wang Zhai
Journal:  Opt Express       Date:  2011-09-12       Impact factor: 3.894

5.  Trans-Pacific transport of dust aerosols from East Asia: Insights gained from multiple observations and modeling.

Authors:  Jianping Guo; Mengyun Lou; Yucong Miao; Yuan Wang; Zhaoliang Zeng; Huan Liu; Jing He; Hui Xu; Fu Wang; Min Min; Panmao Zhai
Journal:  Environ Pollut       Date:  2017-07-27       Impact factor: 8.071

6.  Quantifying the low bias of CALIPSO's column aerosol optical depth due to undetected aerosol layers.

Authors:  Man-Hae Kim; Ali H Omar; Mark A Vaughan; David M Winker; Charles R Trepte; Yongxiang Hu; Zhaoyan Liu; Sang-Woo Kim
Journal:  J Geophys Res Atmos       Date:  2017-01-27       Impact factor: 4.261

  6 in total
  6 in total

1.  Evaluation of the aerosol vertical distribution in global aerosol models through comparison against CALIOP measurements: AeroCom phase II results.

Authors:  Brigitte Koffi; Michael Schulz; François-Marie Bréon; Frank Dentener; Birthe Marie Steensen; Jan Griesfeller; David Winker; Yves Balkanski; Susanne E Bauer; Nicolas Bellouin; Terje Berntsen; Huisheng Bian; Mian Chin; Thomas Diehl; Richard Easter; Steven Ghan; Didier A Hauglustaine; Trond Iversen; Alf Kirkevåg; Xiaohong Liu; Ulrike Lohmann; Gunnar Myhre; Phil Rasch; Øyvind Seland; Ragnhild B Skeie; Stephen D Steenrod; Philip Stier; Jason Tackett; Toshihiko Takemura; Kostas Tsigaridis; Maria Raffaella Vuolo; Jinho Yoon; Kai Zhang
Journal:  J Geophys Res Atmos       Date:  2016-05-23       Impact factor: 4.261

2.  Multitechnique Observations on the Impacts of Declining Air Pollution on the Atmospheric Convective Processes During COVID-19 Pandemic at a Tropical Metropolis.

Authors:  Gargi Rakshit; Soumyajyoti Jana; Animesh Maitra
Journal:  IEEE Geosci Remote Sens Lett       Date:  2021-01-20       Impact factor: 3.966

3.  Lidar Ratio-Depolarization Ratio Relations of Atmospheric Dust Aerosols: The Super-Spheroid Model and High Spectral Resolution Lidar Observations.

Authors:  Senyi Kong; Kaori Sato; Lei Bi
Journal:  J Geophys Res Atmos       Date:  2022-02-16       Impact factor: 5.217

4.  On the net primary productivity over the Arabian Sea due to the reduction in mineral dust deposition.

Authors:  Chakradhar Rao Tandule; Mukunda M Gogoi; Rama Gopal Kotalo; S Suresh Babu
Journal:  Sci Rep       Date:  2022-05-11       Impact factor: 4.996

5.  CALIPSO lidar level 3 aerosol profile product: version 3 algorithm design.

Authors:  Jason L Tackett; David M Winker; Brian J Getzewich; Mark A Vaughan; Stuart A Young; Jayanta Kar
Journal:  Atmos Meas Tech       Date:  2018-07-17       Impact factor: 4.176

6.  Simultaneous Characterization of Wildfire Smoke and Surface Properties With Imaging Spectroscopy During the FIREX-AQ Field Campaign.

Authors:  Philip G Brodrick; David R Thompson; Michael J Garay; David M Giles; Brent N Holben; Olga V Kalashnikova
Journal:  J Geophys Res Atmos       Date:  2022-04-07       Impact factor: 5.217

  6 in total

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