N: 90 S: -90 E: 180 W: -180
Description
WARNING: On 2021/09/23 the EOS Aqua executed a Deep Space Maneuver (DSM). In the DSM, the spacecraft is turned such that the normal Earth field of regard is deep space.
The thermal impact of the DSM caused a shift of the centroids of spectral response functions (SRF) of about 1% of the width of the SRF, equivalent to a frequency shift of 9 parts per million. This shift is reflected in the “spectral_freq” parameter (observed frequencies) in the L1b v5 files for each 6 minute granule. The magnitude of the effect on brightness temperatures (BT) depends on the spectral gradient of each channel. Maximum BT shifts are approximately +- 0.5 K, although many channels experience far smaller BT shifts. Approximately 1803 channels have BT shifts of less than 0.1 K and 575 channels are now shifted in BT by more than 0.1 K, while 231 of these channels have BT shifts greater than 0.2 K.
Users of the L1b v5 product who are concerned that these shifts may impact their science investigations and applications are encouraged to switch to the AIRS L1c v6.7.4 product, which, among many other improvements, converts the spectra to a fixed frequency grid. END OF WARNING.
The Atmospheric Infrared Sounder (AIRS) is a grating spectrometer (R = 1200) aboard the second Earth Observing System (EOS) polar-orbiting platform, EOS Aqua. In combination with the Advanced Microwave Sounding Unit (AMSU) and the Humidity Sounder for Brazil (HSB), AIRS constitutes an innovative atmospheric sounding group of visible, infrared, and microwave sensors. The AIRS Infrared (IR) level 1B data set contains AIRS calibrated and geolocated radiances in milliWatts/m^2/cm^-1/steradian for 2378 infrared channels in the 3.74 to 15.4 micron region of t he spectrum. The AIRS instrument is co-aligned with AMSU-A so that successive blocks of 3 x 3 AIRS footprints are contained within one AMSU-A footprint. The AIRIBRAD_005 products are stored in files (often referred to as "granules") that contain 6 minutes of data, 90 footprints across track by 135 lines along track.
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Citation
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READ-ME
ALGORITHM THEORETICAL BASIS DOCUMENT (ATBD)
GENERAL DOCUMENTATION
Publications Citing This Dataset
| Title | Year Sort ascending | Author | Topic |
|---|---|---|---|
| An algorithm to retrieve peroxyacetyl nitrate from AIRS | Laughner, Joshua L., Kulawik, Susan S., Payne, Vivienne H. | Peroxyacetyl Nitrate, Brightness Temperature, Infrared Radiance, Dust/Ash/Smoke, Sulfur Dioxide, Atmospheric Emitted Radiation, Emissivity, Optical Depth/Thickness, Radiative Flux, Reflectance, Transmittance, Clouds, Cloud Condensation Nuclei, Cloud Droplet Concentration/Size, Cloud Liquid Water/Ice, Cloud Optical Depth/Thickness, Cloud Precipitable Water, Cloud Asymmetry, Cloud Ceiling, Cloud Frequency, Cloud Height, Cloud Top Pressure, Cloud Top Temperature, Cloud Vertical Distribution, Cloud Emissivity, Cloud Radiative Forcing, Cloud Reflectance, Cloud Types | |
| Extreme concentric gravity waves observed in the mesosphere and | Li, Qinzeng, Xu, Jiyao, Zhu, Yajun, Wrasse, Cristiano M., Bageston, Jose V., Yuan, Wei, Liu, Xiao, Liu, Weijun, Wen, Ying, Li, Hui, Liu, Zhengkuan | Dust/Ash/Smoke, Sulfur Dioxide, Infrared Radiance | |
| Quantifying biases in TROPESS AIRS, CrIS, and joint AIRS+ OMI tropospheric ozone products using ozonesondes | Pennington, Elyse A., Osterman, Gregory B., Payne, Vivienne H., Miyazaki, Kazuyuki, Bowman, Kevin W., Neu, Jessica L. | Dust/Ash/Smoke, Sulfur Dioxide, Infrared Radiance, Brightness Temperature, Carbon Monoxide, Tropospheric Ozone, Geopotential Height, Tropopause, Atmospheric Ozone, Surface Pressure, Outgoing Longwave Radiation, Surface Temperature, Air Temperature, Skin Temperature, Upper Air Temperature, Humidity, Layered Precipitable Water, Total Precipitable Water, Water Vapor Profiles, Water Vapor Concentration Profiles, Cloud Liquid Water/Ice, Cloud Fraction, Cloud Height, Cloud Top Pressure, Cloud Top Temperature, Cloud Vertical Distribution, Emissivity, Skin Temperature, Sea Surface Temperature | |
| Direct observational evidence from space of the effect of CO increase on longwave spectral radiances: the unique role of high-spectral-resolution measurements | Teixeira, Joao, Wilson, R. Chris, Thrastarson, Heidar Th. | Air Temperature, Carbon Monoxide, Cloud Fraction, Cloud Height, Cloud Top Pressure, Cloud Top Temperature, Cloud Vertical Distribution, Emissivity, Geopotential Height, Methane, Outgoing Longwave Radiation, Atmospheric Ozone, Total Precipitable Water, Sea Surface Temperature, Surface Pressure, Skin Temperature, Surface Temperature, Sulfur Dioxide, Tropopause, Tropospheric Ozone, Upper Air Temperature, Water Vapor Profiles, Cloud Liquid Water/Ice, Dust/Ash/Smoke, Infrared Radiance | |
| Improved estimation of volcanic SO2 injections from satellite retrievals and Lagrangian transport simulations: the 2019 Raikoke eruption | Cai, Zhongyin, Griessbach, Sabine, Hoffmann, Lars | Dust/Ash/Smoke, Sulfur Dioxide, Infrared Radiance | |
| A Complete Study on the Costliest Super Cyclone Amphan (May 2020) with Its Devastating Impact on West Bengal, India | Chatterjee, Soumen, Roy, Smriti | Dust/Ash/Smoke, Sulfur Dioxide, Infrared Radiance, Precipitation, Precipitation Amount, Precipitation Rate, Snow, Rain | |
| Developing Metrics for NASA Earth Science Interdisciplinary Data Products and Services | Liu, Zhong, Shie, Chung-Lin, Ritrivi, Anthony J., Lei, Guang-Dih, Alcott, Gary T., Greene, Mary, Acker, James, Wei, Jennifer C., Meyer, David J., Li, Angela, Al-Jazrawi, Atheer F. | Dust/Ash/Smoke, Sulfur Dioxide, Infrared Radiance | |
| A Synopsis of AIRS GlobalMean ClearSky Radiance Trends From 2003 to 2020 | Huang, Xianglei, Chen, Xiuhong, Fan, Chongxing, Kato, Seiji, Loeb, Norman, Bosilovich, Michael, Ham, SeungHee, Rose, Fred G., Strow, Lawrence L. | Dust/Ash/Smoke, Sulfur Dioxide, Infrared Radiance | |
| Mountain-wave-induced polar stratospheric clouds and their representation in the global chemistry model ICON-ART | Weimer, Michael, Buchmuller, Jennifer, Hoffmann, Lars, Kirner, Ole, Luo, Beiping, Ruhnke, Roland, Steiner, Michael, Tritscher, Ines, Braesicke, Peter | Dust/Ash/Smoke, Sulfur Dioxide, Infrared Radiance | |
| Validation of Near-Real-Time NOAA-20 CrIS Outgoing Longwave Radiation with Multi-Satellite Datasets on Broad Timescales | Wang, Tianyuan, Zhou, Lihang, Tan, Changyi, Divakarla, Murty, Pryor, Ken, Warner, Juying, Wei, Zigang, Goldberg, Mitch, Nalli, Nicholas R. | Dust/Ash/Smoke, Sulfur Dioxide, Infrared Radiance | |
| Nearglobal CFC11 trends as observed by atmospheric infrared sounder from 2003 to 2018 | Chen, Xiuhong, Huang, Xianglei, Strow, L. Larrabee | Dust/Ash/Smoke, Sulfur Dioxide, Infrared Radiance | |
| Mesospheric gravity wave momentum flux associated with a large thunderstorm complex | Smith, Steven M., Setvak, Martin, Beletsky, Yuri, Baumgardner, Jeffrey, Mendillo, Michael | Dust/Ash/Smoke, Sulfur Dioxide, Infrared Radiance | |
| Ice nucleation by aerosols from anthropogenic pollution | Zhao, Bin, Wang, Yuan, Gu, Yu, Liou, Kuo-Nan, Jiang, Jonathan H., Fan, Jiwen, Liu, Xiaohong, Huang, Lei, Yung, Yuk L. | Dust/Ash/Smoke, Sulfur Dioxide, Infrared Radiance | |
| Calibration, level 1 processing, and radiometric validation for TANSO-FTS TIR on GOSAT | Kataoka, Fumie, Knuteson, Robert O., Kuze, Akihiko, Shiomi, Kei, Suto, Hiroshi, Yoshida, Jun, Kondoh, Shinpei, Saitoh, Naoko | Dust/Ash/Smoke, Sulfur Dioxide, Infrared Radiance | |
| Using AIRS and ARM SGP clearsky observations to evaluate meteorological reanalyses: A hyperspectral radiance closure approach | Chen, Xiuhong, Huang, Xianglei, Dong, Xiquan, Xi, Baike, Dolinar, Erica K., Loeb, Norman G., Kato, Seiji, Stackhouse, Paul W., Bosilovich, Michael G. | Carbon Monoxide, Tropospheric Ozone, Geopotential Height, Tropopause, Methane, Atmospheric Ozone, Sulfur Dioxide, Surface Pressure, Outgoing Longwave Radiation, Surface Temperature, Air Temperature, Upper Air Temperature, Total Precipitable Water, Water Vapor Profiles, Cloud Liquid Water/Ice, Cloud Fraction, Cloud Height, Cloud Top Pressure, Cloud Top Temperature, Cloud Vertical Distribution, Emissivity, Skin Temperature, Sea Surface Temperature, Dust/Ash/Smoke, Infrared Radiance | |
| Assessment of COSMIC radio occultation and AIRS hyperspectral IR sounder temperature products in the stratosphere using observed radiances | Feltz, M. L., Knuteson, R. O., Revercomb, H. E. | Dust/Ash/Smoke, Sulfur Dioxide, Infrared Radiance, Carbon Monoxide, Tropospheric Ozone, Geopotential Height, Tropopause, Methane, Atmospheric Ozone, Surface Pressure, Outgoing Longwave Radiation, Surface Temperature, Air Temperature, Upper Air Temperature, Total Precipitable Water, Water Vapor Profiles, Cloud Droplet Concentration/Size, Cloud Liquid Water/Ice, Cloud Optical Depth/Thickness, Cloud Fraction, Cloud Height, Cloud Top Pressure, Cloud Top Temperature, Cloud Vertical Distribution, Cloud Types, Precipitation Rate, Emissivity, Skin Temperature, Sea Surface Temperature, Brightness Temperature, Humidity, Water Vapor | |
| Assessment of NOAA NUCAPS upper air temperature profiles using COSMIC GPS radio occultation and ARM radiosondes | Feltz, M. L., Borg, L., Knuteson, R. O., Tobin, D., Revercomb, H., Gambacorta, A. | Dust/Ash/Smoke, Sulfur Dioxide, Infrared Radiance | |
| Inter-calibration of VIRR/FY-3A/B split-window channels with AIRS/Aqua and IASI/Metop-A measurements | Jiang, Geng-Ming, Wang, Zhong-Yi, Wang, Junbang | Dust/Ash/Smoke, Sulfur Dioxide, Infrared Radiance | |
| Estimation of the refractive index of volcanic ash from satellite infrared sounder data | Ishimoto, Hiroshi, Masuda, Kazuhiko, Fukui, Keiichi, Shimbori, Toshiki, Inazawa, Tomoyuki, Tuchiyama, Hiroaki, Ishii, Kensuke, Sakurai, Toshiyuki | Dust/Ash/Smoke, Sulfur Dioxide, Infrared Radiance | |
| Deriving clear-sky longwave spectral flux from spaceborne hyperspectral radiance measurements: a case study with AIRS observations | Chen, Xiuhong, Huang, Xianglei | Dust/Ash/Smoke, Sulfur Dioxide, Infrared Radiance | |
| Validation of a weather forecast model at radiance level against satellite observations allowing quantification of temperature, humidity, and cloudrelated biases | Bani Shahabadi, Maziar, Huang, Yi, Garand, Louis, Heilliette, Sylvain, Yang, Ping | Air Temperature, Carbon Monoxide, Cloud Fraction, Cloud Height, Cloud Top Pressure, Cloud Top Temperature, Cloud Vertical Distribution, Emissivity, Geopotential Height, Methane, Outgoing Longwave Radiation, Atmospheric Ozone, Total Precipitable Water, Sea Surface Temperature, Surface Pressure, Skin Temperature, Surface Temperature, Sulfur Dioxide, Tropopause, Tropospheric Ozone, Upper Air Temperature, Water Vapor Profiles, Cloud Liquid Water/Ice, Dust/Ash/Smoke, Infrared Radiance | |
| Improving AIRS radiance spectra in high contrast scenes using MODIS | Pagano, Thomas S., Aumann, Hartmut H., Manning, Evan M., Elliott, Denis A., Broberg, Steven E. | Dust/Ash/Smoke, Sulfur Dioxide, Infrared Radiance | |
| A multi-sensor satellite assessment of SO2 emissions from the 201213 eruption of Plosky Tolbachik volcano, Kamchatka | Telling, J., Flower, V.J.B., Carn, S.A. | Sulfur Dioxide, Dust/Ash/Smoke, Infrared Radiance | |
| Intercalibration of SVISSR/FY-2 thermal infrared channels with AIRS/Aqua channels | Jiang, Gengming, Jin, Yaqiu | Dust/Ash/Smoke, Sulfur Dioxide, Infrared Radiance | |
| Investigation on the carbon monoxide pollution over Peninsular Malaysia caused by Indonesia forest fires from AIRS daily measurement | M., Jasim, C., K., S., H., Z., M. | Air Temperature, Carbon Monoxide, Cloud Fraction, Cloud Height, Cloud Top Pressure, Cloud Top Temperature, Cloud Vertical Distribution, Emissivity, Geopotential Height, Methane, Outgoing Longwave Radiation, Atmospheric Ozone, Total Precipitable Water, Sea Surface Temperature, Surface Pressure, Skin Temperature, Surface Temperature, Sulfur Dioxide, Tropopause, Tropospheric Ozone, Upper Air Temperature, Water Vapor Profiles, Cloud Liquid Water/Ice, Cloud Droplet Concentration/Size, Cloud Optical Depth/Thickness, Cloud Types, Precipitation Rate, Brightness Temperature, Infrared Radiance, Visible Radiance, Humidity, Water Vapor, Infrared Radiance, Dust/Ash/Smoke |