Space-Based Remote Sensing of Atmospheric Aerosols: The Multi-Angle Spectro-Polarimetric Frontier
暂无分享,去创建一个
A. Kokhanovsky | O. Hasekamp | T. Cheng | A. Davis | B. Cairns | F. Xu | O. Dubovik | Tatyana Lapyonok | A. D. Noia | V. Natraj | V. Rozanov | S. Savenkov | Y. Oberemok | J. Rietjens | P. Litvinov | I. Kolomiets | I. Sano | S. Mukai | W. Martin | A. Wasilewski | F. A. Stap | M. Duan | R. Munro | A. di Noia
[1] K. Muinonen. Coherent backscattering of light by complex random media of spherical scatterers: numerical solution , 2004 .
[2] Masakatsu Nakajima,et al. Thermal and near infrared sensor for carbon observation Fourier-transform spectrometer on the Greenhouse Gases Observing Satellite for greenhouse gases monitoring. , 2009, Applied optics.
[3] J. Roujean,et al. A bidirectional reflectance model of the Earth's surface for the correction of remote sensing data , 1992 .
[4] T. Eck,et al. Variability of Absorption and Optical Properties of Key Aerosol Types Observed in Worldwide Locations , 2002 .
[5] R. M. Mitchell,et al. Error Estimates for Retrieval of Cloud-Top Pressure Using Absorption in the A Band of Oxygen , 1992 .
[6] S. Howell,et al. Combined Retrievals of Boreal Forest Fire Aerosol Properties with a Polarimeter and Lidar , 2011 .
[7] Anthony B. Davis,et al. Multipixel Retrieval of Structural and Optical Parameters in a 2-D Scene With a Path-Recycling Monte Carlo Forward Model and a New Bayesian Inference Engine , 2013, IEEE Transactions on Geoscience and Remote Sensing.
[8] T. Teichmann,et al. Radiative Transfer on Discrete Spaces , 1966 .
[9] K. Jockers,et al. Multiple scattering of light by densely packed random media of spherical particles: Dense media vector radiative transfer equation , 2006 .
[10] Hiren Jethva,et al. Retrieval of Aerosol Optical Depth above Clouds from OMI Observations: Sensitivity Analysis and Case Studies , 2012 .
[11] M. Mishchenko,et al. Approximate calculation of coherent backscattering for semi-infinite discrete random media , 2009 .
[12] Alexander Smirnov,et al. Multiangle Imaging SpectroRadiometer global aerosol product assessment by comparison with the Aerosol Robotic Network , 2010 .
[13] Anthony B. Davis,et al. Toward New Inferences about Cloud Structures from Multidirectional Measurements in the Oxygen A Band: Middle-of-Cloud Pressure and Cloud Geometrical Thickness from POLDER-3/PARASOL , 2010 .
[14] Alexei Lyapustin,et al. Role of adjacency effect in the remote sensing of aerosol , 2001 .
[15] Robert F. Cahalan,et al. A simple model for the cloud adjacency effect and the apparent bluing of aerosols near clouds , 2008 .
[16] Van de Hulst,et al. Multiple Light Scattering: Tables, Formulas, and Applications , 1980 .
[17] T. Painter,et al. Reflectance quantities in optical remote sensing - definitions and case studies , 2006 .
[18] Patrick J. Roache,et al. Verification and Validation in Computational Science and Engineering , 1998 .
[19] P Koepke,et al. Effective reflectance of oceanic whitecaps. , 1984, Applied optics.
[20] Christoph U. Keller,et al. Use of neural networks in ground-based aerosol retrievals from multi-angle spectropolarimetric observations , 2014 .
[21] Alexei I. Lyapustin. Three-dimensional effects in the remote sensing of surface albedo , 2001, IEEE Trans. Geosci. Remote. Sens..
[22] R. M. Mitchell,et al. Error Estimates for Passive Satellite Measurement of Surface Pressure Using Absorption in the A Band of Oxygen , 1987 .
[23] J. Otterman,et al. Atmospheric effects on radiometric imaging from satellites under low optical thickness conditions , 1980 .
[24] Lorraine Remer,et al. A critical examination of the residual cloud contamination and diurnal sampling effects on MODIS estimates of aerosol over ocean , 2005, IEEE Transactions on Geoscience and Remote Sensing.
[25] Alexander A. Kokhanovsky,et al. Validation of an Analytical Snow BRDF Model Using PARASOL Multi-Angular and Multispectral Observations , 2012, IEEE Geoscience and Remote Sensing Letters.
[26] Andrew K. Heidinger,et al. Molecular Line Absorption in a Scattering Atmosphere. Part II: Application to Remote Sensing in the O2 A band , 2000 .
[27] M. Kahnert,et al. Light scattering by particles with small-scale surface roughness: comparison of four classes of model geometries , 2012 .
[28] Man-li C. Wu,et al. Remote Sensing of Cloud-Top Pressure Using Reflected Solar Radiation in the Oxygen A-Band , 1985 .
[29] Brian Cairns,et al. Dual-photoelastic-modulator-based polarimetric imaging concept for aerosol remote sensing. , 2007, Applied optics.
[30] E. Vermote,et al. Validation of a vector version of the 6S radiative transfer code for atmospheric correction of satellite data. Part II. Homogeneous Lambertian and anisotropic surfaces. , 2007, Applied optics.
[31] J. Hansen,et al. Multiple Scattering of Polarized Light in Planetary Atmospheres. Part I. The Doubling Method , 1971 .
[32] Michael D. King,et al. A flexible inversion algorithm for retrieval of aerosol optical properties from Sun and sky radiance measurements , 2000 .
[33] Peter R. J. North,et al. The inter-comparison of major satellite aerosol retrieval algorithms using simulated intensity and polarization characteristics of reflected light , 2009 .
[34] Filipe Aires,et al. A Regularized Neural Net Approach for Retrieval of Atmospheric and Surface Temperatures with the Iasi Instrument , 2013 .
[35] M. Mishchenko,et al. Gustav Mie and the Evolving Discipline of Electromagnetic Scattering by Particles , 2008 .
[36] Kuolin Hsu,et al. Neural networks in satellite rainfall estimation , 2004 .
[37] U. Lohmann,et al. A study of internal and external mixing scenarios and its effect on aerosol optical properties and direct radiative forcing , 2002 .
[38] Kathleen A. Crean,et al. Regional aerosol retrieval results from MISR , 2002, IEEE Trans. Geosci. Remote. Sens..
[39] Xingfa Gu,et al. Initial research on the polarized reflectance of typical urban surface types measured by the Directional Polarimetric Camera , 2011 .
[40] Huili Gong,et al. Aerosol type over east Asian retrieval using total and polarized remote Sensing , 2013 .
[41] J. Kong,et al. Scattering of Electromagnetic Waves: Advanced Topics , 2001 .
[42] S. Casadio,et al. Application of neural algorithms for a real-time estimation of ozone profiles from GOME measurements , 2002, IEEE Trans. Geosci. Remote. Sens..
[43] William J. Blackwell,et al. A neural-network technique for the retrieval of atmospheric temperature and moisture profiles from high spectral resolution sounding data , 2005, IEEE Transactions on Geoscience and Remote Sensing.
[44] J. Woolley. Reflectance and transmittance of light by leaves. , 1971, Plant physiology.
[45] Clive D Rodgers,et al. Inverse Methods for Atmospheric Sounding: Theory and Practice , 2000 .
[46] Anthony B. Davis,et al. vSmartMOM: A vector matrix operator method-based radiative transfer model linearized with respect to aerosol properties , 2014 .
[47] K. Oka,et al. Spectroscopic polarimetry with a channeled spectrum. , 1999, Optics letters.
[48] W. Munk,et al. Measurement of the Roughness of the Sea Surface from Photographs of the Sun’s Glitter , 1954 .
[49] Michael J. Garay,et al. An optimization approach for aerosol retrievals using simulated MISR radiances , 2012 .
[50] D. Tanré,et al. Remote Sensing of Tropospheric Aerosols from Space: Past, Present, and Future. , 1999 .
[51] Yujie Wang,et al. Code SHARM: fast and accurate radiative transfer over spatially variable anisotropic surfaces , 2010 .
[52] Xingfa Gu,et al. Simultaneous retrieval of aerosol optical properties over the Pearl River Delta, China using multi-angular, multi-spectral, and polarized measurements , 2011 .
[53] Jean-François Léon,et al. Application of spheroid models to account for aerosol particle nonsphericity in remote sensing of desert dust , 2006 .
[54] Brian Cairns,et al. Electromagnetic scattering by a morphologically complex object: Fundamental concepts and common misconceptions , 2011 .
[55] R. M. Mitchell. The effects of aerosol scattering on remote pressure measurement via oxygen A-band absorption , 1987 .
[56] Christoph U. Keller,et al. Astrophysical Spectropolarimetry: Instrumentation for Astrophysical Spectropolarimetry , 2001 .
[57] Otto P. Hasekamp,et al. Capability of multi-viewing-angle photo-polarimetric measurements for the simultaneous retrieval of aerosol and cloud properties , 2010 .
[58] Andrew A. Lacis,et al. Multiple Scattering of Light by Particles , 2006 .
[59] Knut Stamnes,et al. Modeling of radiation transport in coupled atmosphere-snow-ice-ocean systems , 2011 .
[60] D. Diner,et al. Linearization of a scalar matrix operator method radiative transfer model with respect to aerosol and surface properties , 2013 .
[61] Robert J. D. Spurr,et al. VLIDORT: A linearized pseudo-spherical vector discrete ordinate radiative transfer code for forward model and retrieval studies in multilayer multiple scattering media , 2006 .
[62] J. Hovenier. Multiple Scattering of Polarized Light in Planetary Atmospheres , 1971 .
[63] Pavel Litvinov,et al. Aerosol properties over the ocean from PARASOL multiangle photopolarimetric measurements , 2011 .
[64] G. Hunt,et al. Discrete space theory of radiative transfer II. Stability and non-negativity , 1969, Proceedings of the Royal Society of London. A. Mathematical and Physical Sciences.
[65] Bernard Pinty,et al. Determination of land and ocean reflective, radiative, and biophysical properties using multiangle imaging , 1998, IEEE Trans. Geosci. Remote. Sens..
[66] P. Kebabian,et al. Realization of quantitative-grade fieldable snapshot imaging spectropolarimeter. , 2004, Optics express.
[67] H. Rahman,et al. Coupled surface‐atmosphere reflectance (CSAR) model: 1. Model description and inversion on synthetic data , 1993 .
[68] C. Keller,et al. Spectral modulation for full linear polarimetry. , 2009, Applied optics.
[69] Piet Stammes,et al. Degree of linear polarization of light emerging from the cloudless atmosphere in the oxygen A band , 1999 .
[70] R. Murphy,et al. Physical Sciences: Circularly Polarized Visible Light from Jupiter , 1971, Nature.
[71] Fabienne Maignan,et al. Polarized reflectances of natural surfaces: Spaceborne measurements and analytical modeling , 2009 .
[72] Didier Tanré,et al. Characterization of aerosols over ocean from POLDER/ADEOS‐1 , 1999 .
[73] K. Carder,et al. Monte Carlo simulation of the atmospheric point-spread function with an application to correction for the adjacency effect. , 1995, Applied optics.
[74] V. F. Tuganov. Degree of linear polarization of the bremsstrahlung from a plasma in a magnetic field , 1977 .
[75] M. van der Mee,et al. Transfer of Polarized Light in Planetary Atmospheres: Basic Concepts and Practical Methods , 2005 .
[76] Boris A. Kargin,et al. The Monte Carlo Methods in Atmospheric Optics , 1980 .
[77] G. Brown,et al. Shadowing by non-Gaussian random surfaces , 1980 .
[78] F. Maignan,et al. Bidirectional reflectance of Earth targets: evaluation of analytical models using a large set of spaceborne measurements with emphasis on the Hot Spot , 2004 .
[79] J. Martonchik,et al. The clouds of Venus , 1977 .
[80] A. Smirnov,et al. AERONET-a federated instrument network and data archive for aerosol Characterization , 1998 .
[81] Dianne P. O'Leary,et al. The Use of the L-Curve in the Regularization of Discrete Ill-Posed Problems , 1993, SIAM J. Sci. Comput..
[82] Q. Liu,et al. Radiative transfer model: matrix operator method. , 1996, Applied optics.
[83] S. Mcclain,et al. The Airborne Multiangle SpectroPolarimetric Imager (AirMSPI): a new tool for aerosol and cloud remote sensing , 2013 .
[84] Makiko Sato,et al. The missing climate forcing , 1997 .
[85] Yongxiang Hu,et al. A vector radiative transfer model for coupled atmosphere and ocean systems based on successive order of scattering method. , 2008, Optics express.
[86] A. Strahler,et al. On the derivation of kernels for kernel‐driven models of bidirectional reflectance , 1995 .
[87] A. Marshak,et al. MODIS observations of enhanced clear sky reflectance near clouds , 2009 .
[88] Alan H. Strahler,et al. Geometric-optical bidirectional reflectance modeling of the discrete crown vegetation canopy: effect of crown shape and mutual shadowing , 1992, IEEE Trans. Geosci. Remote. Sens..
[89] Tomoyuki Nishita,et al. A fast method for simulating destruction and the generated dust and debris , 2009, The Visual Computer.
[90] T. Eck,et al. Accuracy assessments of aerosol optical properties retrieved from Aerosol Robotic Network (AERONET) Sun and sky radiance measurements , 2000 .
[91] Ilse Aben,et al. Surface pressure retrieval from SCIAMACHY measurements in the O 2 A Band: validation of the measurements and sensitivity on aerosols , 2005 .
[92] Jens Redemann,et al. Simultaneous retrieval of aerosol and cloud properties during the MILAGRO field campaign , 2011 .
[93] J. Potter. The Delta Function Approximation in Radiative Transfer Theory , 1970 .
[94] Qingyuan Han,et al. High‐spectral resolution simulation of polarization of skylight: Sensitivity to aerosol vertical profile , 2008 .
[95] C. Bretherton,et al. Clouds and Aerosols , 2013 .
[96] Knut Stamnes,et al. SIMULTANEOUS RETRIEVAL OF AEROSOLS AND MARINE CONSTITUENTS IN COASTAL WATERS , 2004 .
[97] I. Sano. Optical thickness and Angstrom exponent of aerosols over the land and ocean from space-borne polarimetric data , 2002 .
[98] Gerrit van Harten. Spectropolarimetry for planetary exploration , 2014 .
[99] Didier Tanré,et al. Statistically optimized inversion algorithm for enhanced retrieval of aerosol properties from spectral multi-angle polarimetric satellite observations , 2010 .
[100] O. P. Hasekamp,et al. A linearized vector radiative transfer model for atmospheric trace gas retrieval , 2002 .
[101] Lorraine Remer,et al. A Color Ratio Method for Simultaneous Retrieval of Aerosol and Cloud Optical Thickness of Above-Cloud Absorbing Aerosols From Passive Sensors: Application to MODIS Measurements , 2013, IEEE Transactions on Geoscience and Remote Sensing.
[102] M. Lebsock,et al. Information content of near‐infrared spaceborne multiangular polarization measurements for aerosol retrievals , 2007 .
[103] T. Marbach,et al. The Multi-Viewing, -Channel, -Polarisation Imager (3MI) of the EUMETSAT Polar System - Second Generation (EPS-SG) dedicated to aerosol characterisation , 2013, Remote Sensing.
[104] D. Diner,et al. Sensitivity of multi-angle photo-polarimetry to vertical layering and mixing of absorbing aerosols: Quantifying measurement uncertainties , 2011 .
[105] Teruyuki Nakajima,et al. Algorithms for radiative intensity calculations in moderately thick atmospheres using a truncation approximation , 1988 .
[106] Warren J. Wiscombe,et al. On initialization, error and flux conservation in the doubling method , 1976 .
[107] Oleg Dubovik,et al. Model for land surface reflectance treatment: Physical derivation, application for bare soil and evaluation on airborne and satellite measurements , 2012 .
[108] David J. Diner,et al. Retrieval of aerosol properties over land using MISR observations , 2009 .
[109] Didier Tanré,et al. Aerosol Remote Sensing over Clouds Using A-Train Observations , 2009 .
[110] Bernard Pinty,et al. Techniques for the retrieval of aerosol properties over land and ocean using multiangle imaging , 1998, IEEE Trans. Geosci. Remote. Sens..
[111] M. Mishchenko,et al. Satellite retrieval of aerosol properties over the ocean using polarization as well as intensity of reflected sunlight , 1997 .
[112] J. Hansen,et al. Orbiter Cloud Photopolarimeter Investigation , 1979, Science.
[113] Alexander A. Kokhanovsky,et al. Aerosol Optics: Light Absorption and Scattering by Particles in the Atmosphere , 2008 .
[114] Didier Tanré,et al. Polarized reflectance of bare soils and vegetation: measurements and models , 1995 .
[115] Zoran Obradovic,et al. Uncertainty Analysis of Neural-Network-Based Aerosol Retrieval , 2012, IEEE Transactions on Geoscience and Remote Sensing.
[116] S. R. Meier,et al. Polarimetric microfacet scattering theory with applications to absorptive and reflective surfaces , 2002 .
[117] K. Jockers,et al. Optical properties of aggregate particles comparable in size to the wavelength , 2004 .
[118] Robert F. Cahalan,et al. The Landsat Scale Break in Stratocumulus as a Three-Dimensional Radiative Transfer Effect: Implications for Cloud Remote Sensing , 1997 .
[119] I. Barton,et al. Remote measurement of surface pressure using absorption in the oxygen A-band. , 1986, Applied optics.
[120] Didier Tanré,et al. Polarized reflectance of bare soils and vegetation: measurements and models , 1995, IEEE Transactions on Geoscience and Remote Sensing.
[121] J. Fischer,et al. Polarization of skylight in the O(2)A band: effects of aerosol properties. , 2008, Applied optics.
[122] Bernhard Mayer,et al. The influence of neighbouring clouds on the clear sky reflectance studied with the 3-D transport code RADUGA , 2005 .
[123] S. Pellicori,et al. Pioneer imaging photopolarimeter optical system. , 1973, Applied optics.
[124] E. Jäkel,et al. Influence of spatial heterogeneity of local surface albedo on the area-averaged surface albedo retrieved from airborne irradiance measurements , 2012 .
[125] V. Rozanov,et al. Information content of the spectral measurements of the 0.76 μm O2 outgoing radiation with respect to the vertical aerosol optical properties , 1995 .
[126] Fuzhong Weng,et al. NOTES AND CORRESPONDENCE Advanced Doubling-Adding Method for Radiative Transfer in Planetary Atmospheres , 2006 .
[127] Alexander A. Semenov,et al. Estimation of Normalized Atmospheric Point Spread Function and Restoration of Remotely Sensed Images , 2011, IEEE Transactions on Geoscience and Remote Sensing.
[128] Pavel Litvinov,et al. Reflection models for soil and vegetation surfaces from multiple-viewing angle photopolarimetric measurements , 2010 .
[129] Annick Bricaud,et al. The POLDER mission: instrument characteristics and scientific objectives , 1994, IEEE Trans. Geosci. Remote. Sens..
[130] S. Ghan,et al. Aerosol optical depth increase in partly cloudy conditions , 2012 .
[131] R. Richter,et al. Geo-atmospheric processing of airborne imaging spectrometry data. Part 2: Atmospheric/topographic correction , 2002 .
[132] J. W. Hovenier,et al. Interpretation of the polarization of Venus , 1974 .
[133] B. Smith,et al. Geometrical shadowing of a random rough surface , 1967 .
[134] H. Treut,et al. THE CALIPSO MISSION: A Global 3D View of Aerosols and Clouds , 2010 .
[135] J. Hansen,et al. Light scattering in planetary atmospheres , 1974 .
[136] F. Bréon,et al. Remote sensing of aerosols over land surfaces including polarization measurements and application to POLDER measurements , 1997 .
[137] J. Deuze,et al. Analysis of the spectral and angular response of the vegetated surface polarization for the purpose of aerosol remote sensing over land. , 2009, Applied optics.
[138] Alexander Marshak,et al. Global CALIPSO Observations of Aerosol Changes Near Clouds , 2011, IEEE Geoscience and Remote Sensing Letters.
[139] R. A. Chandos,et al. Galileo Photopolarimeter/Radiometer experiment , 1992 .
[140] A. Marshak,et al. Space–Time Characteristics of Light Transmitted through Dense Clouds: A Green's Function Analysis , 2002 .
[141] Feng Xu,et al. Markov chain formalism for polarized light transfer in plane-parallel atmospheres, with numerical comparison to the Monte Carlo method. , 2011, Optics express.
[142] J. Hovenier,et al. A fast method for simulating observations of polarized light emerging from the atmosphere applied to the oxygen-A band , 2000 .
[143] Kai Zhang,et al. MAC‐v1: A new global aerosol climatology for climate studies , 2013 .
[144] Alexei Lyapustin,et al. APC: A New Code for Atmospheric Polarization Computations , 2013 .
[145] Zhengqiang Li,et al. Aerosol optical depth and fine-mode fraction retrieval over East Asia using multi-angular total and polarized remote sensing , 2011 .
[146] M. Mishchenko. Electromagnetic Scattering by Particles and Particle Groups: An Introduction , 2014 .
[147] A. Kokhanovsky,et al. Satellite Aerosol Remote Sensing Over Land , 2009 .
[148] David L. Phillips,et al. A Technique for the Numerical Solution of Certain Integral Equations of the First Kind , 1962, JACM.
[149] Brian Cairns,et al. Contribution of water-leaving radiances to multiangle, multispectral polarimetric observations over the open ocean: bio-optical model results for case 1 waters. , 2006, Applied optics.
[150] Misako Kachi,et al. Global Change Observation Mission (GCOM) for Monitoring Carbon, Water Cycles, and Climate Change , 2010, Proceedings of the IEEE.
[151] Graeme L. Stephens,et al. A new polarized atmospheric radiative transfer model , 1991 .
[152] R. S. Fraser,et al. Adjacency effects on imaging by surface reflection and atmospheric scattering: cross radiance to zenith. , 1979, Applied optics.
[153] Larry D. Travis,et al. Light scattering by nonspherical particles : theory, measurements, and applications , 1998 .
[154] J. Seinfeld,et al. Atmospheric Chemistry and Physics: From Air Pollution to Climate Change , 1997 .
[155] Oleg Dubovik,et al. GRASP: a versatile algorithm for characterizing the atmosphere , 2014 .
[156] Christoph U. Keller,et al. Atmospheric aerosol characterization with a ground-based SPEX spectropolarimetric instrument , 2014 .
[157] Sergey N. Savenkov,et al. Optimization and structuring of the instrument matrix for polarimetric measurements , 2002 .
[158] O. Torres,et al. Remote sensing of mixed cloud and aerosol scenes , 2014 .
[159] D. Diner,et al. Linearization of Markov chain formalism for vector radiative transfer in a plane-parallel atmosphere/surface system. , 2012, Applied optics.
[160] Piet Stammes,et al. Deriving terrestrial cloud top pressure from photopolarimetry of reflected light , 2000 .
[161] V. Babenko,et al. Electromagnetic scattering in disperse media : inhomogeneous and anisotropic particles , 2003 .
[162] Frans Snik,et al. Spectral line polarimetry with a channeled polarimeter. , 2014, Applied optics.
[163] John P. Burrows,et al. Ozone profile retrieval from Global Ozone Monitoring Experiment (GOME) data using a neural network approach (Neural Network Ozone Retrieval System (NNORSY)) , 2003 .
[164] Robert F. Cahalan,et al. 3‐D aerosol‐cloud radiative interaction observed in collocated MODIS and ASTER images of cumulus cloud fields , 2007 .
[165] Pavel Litvinov,et al. Semi-empirical BRDF and BPDF models applied to the problem of aerosol retrievals over land: testing on airborne data and implications for modeling of top-of-atmosphere measurements , 2011 .
[166] Gorden Videen,et al. Polarimetric detection, characterization, and remote sensing , 2011 .
[167] Joop W. Hovenier,et al. Transfer of Polarized Light in Planetary Atmospheres , 2004 .
[168] Michael J. Garay,et al. 3D radiative transfer effects in multi-angle/multispectral radio-polarimetric signals from a mixture of clouds and aerosols viewed by a non-imaging sensor , 2013, Optics & Photonics - Optical Engineering + Applications.
[169] J. Ross. The radiation regime and architecture of plant stands , 1981, Tasks for vegetation sciences 3.
[170] W. Paul Menzel,et al. Remote sensing of cloud, aerosol, and water vapor properties from the moderate resolution imaging spectrometer (MODIS) , 1992, IEEE Trans. Geosci. Remote. Sens..
[171] Michael I. Mishchenko,et al. Scattering of electromagnetic waves by ensembles of particles and discrete random media , 2011 .
[172] Otto P. Hasekamp,et al. Retrieval of aerosol properties over the ocean from multispectral single‐viewing‐angle measurements of intensity and polarization: Retrieval approach, information content, and sensitivity study , 2005 .
[173] Florence Nadal,et al. Parameterization of surface polarized reflectance derived from POLDER spaceborne measurements , 1999, IEEE Trans. Geosci. Remote. Sens..
[174] Diego G. Loyola,et al. Applications of neural network methods to the processing of Earth observation satellite data , 2005, Proceedings. 2005 IEEE International Joint Conference on Neural Networks, 2005..
[175] Oleg Dubovik,et al. Optimization of Numerical Inversion in Photopolarimetric Remote Sensing , 2004 .
[176] Yoram J. Kaufman,et al. Solution of the equation of radiative transfer for remote sensing over nonuniform surface reflectivity , 1982 .
[177] M. Gabella,et al. Retrieval of aerosol profile variations from reflected radiation in the oxygen absorption a band. , 1999, Applied optics.
[178] R. P. Lawson,et al. Characterization of Aerosol Inlets and Ducts , 2001 .
[179] J. Martonchik,et al. The clouds of Venus: A synthesis report , 1980 .
[180] H. Gordon,et al. Radiance reflected from the ocean-atmosphere system: synthesis from individual components of the aerosol size distribution. , 1994, Applied optics.
[181] A. Lacis,et al. Past, present, and future of global aerosol climatologies derived from satellite observations: A perspective , 2007 .
[182] Feng Xu,et al. Markov chain formalism for vector radiative transfer in a plane-parallel atmosphere overlying a polarizing surface. , 2011, Optics letters.
[183] W. Wiscombe. The Delta–M Method: Rapid Yet Accurate Radiative Flux Calculations for Strongly Asymmetric Phase Functions , 1977 .
[184] J. Hansen,et al. Accurate monitoring of terrestrial aerosols and total solar irradiance: Introducing the Glory mission , 2007 .
[185] Tatsuya Yokota,et al. Benchmark results in vector atmospheric radiative transfer , 2010 .
[186] A. Kokhanovsky,et al. Radiative transfer through terrestrial atmosphere and ocean: Software package SCIATRAN , 2014 .
[187] nasa. Charge-coupled device image sensor study , 2013 .
[188] Jochen Landgraf,et al. Retrieval of aerosol properties over land surfaces: capabilities of multiple-viewing-angle intensity and polarization measurements. , 2007, Applied optics.
[189] Christoph U. Keller,et al. Prototyping for the Spectropolarimeter for Planetary EXploration (SPEX): calibration and sky measurements , 2011, Optical Engineering + Applications.
[190] R. Muttiah,et al. Transmitted and reflected scattering matrices from an English oak leaf. , 2003, Applied optics.
[191] Rob Heylen,et al. Detecting the Adjacency Effect in Hyperspectral Imagery With Spectral Unmixing Techniques , 2013, IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing.
[192] H. Rahman,et al. Coupled surface-atmosphere reflectance (CSAR) model: 2. Semiempirical surface model usable with NOAA advanced very high resolution radiometer data , 1993 .
[193] F. Maignan,et al. Remote sensing of aerosols over land surfaces from POLDER‐ADEOS‐1 polarized measurements , 2001 .
[194] M. Mishchenko,et al. Vector radiative transfer equation for arbitrarily shaped and arbitrarily oriented particles: a microphysical derivation from statistical electromagnetics. , 2002, Applied optics.
[195] Hester Volten,et al. Scattering matrix of large Saharan dust particles: Experiments and computations , 2007 .
[196] ANALYSE DES EFFETS ATMOSPHÉRIQUES DANS LES IMAGES HRV DE SPOT , 1988 .
[197] Jonathan H. Jiang,et al. Touring the Atmosphere Aboard the A‐Train , 2011 .
[198] R. Wolstencroft,et al. Circular Polarization: Jupiter and Other Planets , 1971, Nature.
[199] D. Wark,et al. Discussion of the letter by R. A. Hanel, “Determination of cloud altitude from a satellite” , 1961 .
[200] Ralph A. Kahn,et al. Detecting Thin Cirrus in Multiangle Imaging Spectroradiometer Aerosol Retrievals , 2010 .
[201] Brian Cairns,et al. Research Scanning Polarimeter: calibration and ground-based measurements , 1999, Optics + Photonics.
[202] E. Pottier,et al. Concept of polarization entropy in optical scattering , 1995 .
[203] S. Sterckx,et al. Detection and correction of adjacency effects in hyperspectral airborne data of coastal and inland waters: the use of the near infrared similarity spectrum , 2011 .
[204] Alexei Lyapustin,et al. Green's function method in the radiative transfer problem. II. Spatially heterogeneous anisotropic surface. , 2002, Applied optics.
[205] Brent N. Holben,et al. An analysis of potential cloud artifacts in MODIS over ocean aerosol optical thickness products , 2005 .
[206] Daniel Schläpfer,et al. Geo-atmospheric processing of airborne imaging spectrometry data. Part 1: Parametric orthorectification , 2002 .
[207] M. Mishchenko. Electromagnetic Scattering by Particles and Particle Groups: Epilogue , 2014 .
[208] E. Vermote,et al. Validation of a vector version of the 6S radiative transfer code for atmospheric correction of satellite data. Part I: path radiance. , 2006, Applied optics.
[209] Rudolf A. Hanel,et al. Determination of Cloud Altitude from a Satellite , 1961 .
[210] Maurice Herman,et al. Aerosol remote sensing from POLDER/ADEOS over the ocean: Improved retrieval using a nonspherical particle model , 2005 .
[211] G. E. Hunt,et al. Discrete space theory of radiative transfer I. Fundamentals , 1969, Proceedings of the Royal Society of London. A. Mathematical and Physical Sciences.
[212] Arnaud Hélière,et al. ATLID, the atmospheric lidar on board the Earthcare Satellite , 2017, International Conference on Space Optics.
[213] T. Takashima,et al. Simulation of atmospheric effects on the emergent radiation over a checkerboard type of terrain , 1992 .
[214] L. A. Watts,et al. Orbiter Cloud Photopolarimeter For The Pioneer Venus Mission , 1977, Optics & Photonics.
[215] David Crisp,et al. The Orbiting Carbon Observatory (OCO) mission , 2004 .
[216] Alexander A. Kokhanovsky,et al. Spectral reflectance of whitecaps , 2004 .
[217] Zoran Obradovic,et al. A Data-Mining Approach for the Validation of Aerosol Retrievals , 2008, IEEE Geoscience and Remote Sensing Letters.
[218] J. Hovenier,et al. The adding method for multiple scattering calculations of polarized light , 1987 .
[219] Andrew K. Heidinger,et al. Molecular Line Absorption in a Scattering Atmosphere. Part I: Theory , 2000 .
[220] K. Stamnes,et al. Numerically stable algorithm for discrete-ordinate-method radiative transfer in multiple scattering and emitting layered media. , 1988, Applied optics.
[221] P. Deschamps,et al. Influence of the background contribution upon space measurements of ground reflectance. , 1981, Applied optics.
[222] D. Diner,et al. Atmospheric transfer of radiation above an inhomogeneous non-Lambertian reflective ground—I. Theory , 1984 .
[223] D. Labate,et al. METOP-SG 3 MI ( Multi-viewing Multi-channel Multipolarization Imaging ) , a powerful observing mission for future operational applications , 2013 .
[224] Teruyuki Nakajima,et al. Matrix formulations for the transfer of solar radiation in a plane-parallel scattering atmosphere. , 1986 .
[225] D. Diner,et al. Atmospheric transfer of radiation above an inhomogeneous non-Lambertian reflective ground. II. Computational considerations and results. , 1984 .
[226] Yoram J. Kaufman,et al. The effect of Earth's atmosphere on contrast reduction·for a nonuniform surface albedo and ‘two-halves’ field , 1980 .
[227] Russell A. Chipman,et al. Exploration of a Polarized Surface Bidirectional Reflectance Model Using the Ground-Based Multiangle SpectroPolarimetric Imager , 2012 .
[228] Pavel Litvinov,et al. Models for surface reflection of radiance and polarized radiance: Comparison with airborne multi-angle photopolarimetric measurements and implications for modeling top-of-atmosphere measurements , 2011 .
[229] Jonathan Mark Welles. A bidirectional reflectance model for nonrandom canopies , 1988 .
[230] C. Zehner,et al. Application of neural algorithms for a real time estimation of ozone profiles from GOME measurements , 2001, IGARSS 2001. Scanning the Present and Resolving the Future. Proceedings. IEEE 2001 International Geoscience and Remote Sensing Symposium (Cat. No.01CH37217).
[231] J. Stenflo,et al. Charge-coupled device image sensor as a demodulator in a 2-D polarimeter with a piezoelastic modulator. , 1990, Applied optics.
[232] D. Tanré,et al. Retrieval of aerosol microphysical and optical properties above liquid clouds from POLDER/PARASOL polarization measurements , 2012 .
[233] Brian Cairns,et al. Accurate monitoring of terrestrial aerosols and total solar irradiance: the NASA Glory mission , 2010, Remote Sensing.
[234] Xingfa Gu,et al. The optical properties of absorbing aerosols with fractal soot aggregates: Implications for aerosol remote sensing , 2013 .