Stokes resolved differential temperature: an important metric of polarimetric precision in the long-wave infrared
暂无分享,去创建一个
Russell A. Chipman | Dong L. Wu | Meredith K. Kupinski | Kira A. Hart Shanks | R. Chipman | M. Kupinski
[1] Joseph A. Shaw,et al. Large-area blackbody emissivity variation with observation angle , 2009, Defense + Commercial Sensing.
[2] Russell A. Chipman,et al. Relating the statistics of the angle of linear polarization to measurement uncertainty of the Stokes vector , 2014 .
[3] Kevin R. Leonard,et al. Predicted NETD performance of a polarized infrared imaging sensor , 2014, Defense + Security Symposium.
[4] Steven Platnick,et al. Retrieval of Ice Cloud Properties from AIRS and MODIS Observations Based on a Fast High-Spectral-Resolution Radiative Transfer Model , 2013 .
[5] Justin Vaden,et al. Pyxis ® : Enhanced Thermal Imaging with a Division of Focal Plane Polarimeter 15 September 2015 , 2015 .
[6] Joseph A. Shaw,et al. Calibration of uncooled LWIR microbolometer imagers to enable long-term field deployment , 2014, Defense + Security Symposium.
[7] Joseph A. Shaw,et al. Correcting for focal-plane-array temperature dependence in microbolometer infrared cameras lacking thermal stabilization , 2013 .
[8] Jungang Miao,et al. Polarization difference due to nonrandomly oriented ice particles at millimeter/submillimeter waveband , 2011 .
[9] Joseph A. Shaw,et al. Radiometric calibration of an ultra-compact microbolometer thermal imaging module , 2017, Commercial + Scientific Sensing and Imaging.
[10] Review of design and signal processing of polarimetric imaging cameras , 2021 .
[11] Jennifer Johnson,et al. Long-wave infrared imaging for non-invasive beehive population assessment. , 2011, Optics express.
[12] Ronald G. Driggers,et al. Modeling of IR sensor performance in cold weather , 2006, SPIE Defense + Commercial Sensing.
[13] Christian Mätzler,et al. Detection of Cirrus Clouds Using Infrared Radiometry , 2011, IEEE Transactions on Geoscience and Remote Sensing.
[14] Russell A. Chipman,et al. First results from an uncooled LWIR polarimeter for cubesat deployment , 2020 .
[15] P. Nugent,et al. Physics principles in radiometric infrared imaging of clouds in the atmosphere , 2013 .
[16] David M. Le Vine,et al. Comment on Modified Stokes Parameters , 2013, IEEE Trans. Geosci. Remote. Sens..
[17] Grzegorz Bieszczad,et al. Method of signal processing in a time-division LWIR image polarimetric sensor. , 2020, Applied optics.
[18] Michael W. Kudenov,et al. Infrared Stokes imaging polarimeter using microbolometers , 2009, Organic Photonics + Electronics.
[19] Russell A. Chipman,et al. Linear Stokes measurement of thermal targets using compact LWIR spectropolarimeter , 2020, Defense + Commercial Sensing.
[20] Russell Chipman,et al. Angle of linear polarization images of outdoor scenes , 2019, Optical Engineering.
[21] João Marcos Travassos Romano,et al. Stokes vector analysis of LWIR polarimetric in adverse weather , 2011, Optical Engineering + Applications.
[22] J. Baker,et al. Measurements of atmospheric brightness temperature fluctuations and their implications on passive remote sensing. , 2005, Optics express.
[23] David G. Long,et al. Stokes Antenna Temperatures , 2008, IEEE Transactions on Geoscience and Remote Sensing.
[24] J. L. Pezzaniti,et al. IR polarimetric signatures , 2014, Defense + Security Symposium.
[25] Joseph A. Shaw,et al. Cloud statistics measured with the infrared cloud imager (ICI) , 2005, IEEE Transactions on Geoscience and Remote Sensing.
[26] Ping Yang,et al. Sensitivity Analyses for the Retrievals of Ice Cloud Properties From Radiometric and Polarimetric Measurements in Sub‐mm/mm and Infrared Bands , 2020, Journal of Geophysical Research: Atmospheres.
[27] R. Chipman,et al. Polarized Light and Optical Systems , 2018 .
[28] R. Driggers,et al. Introduction to Infrared and Electro-Optical Systems , 1998 .