1. Ulaby, F. T. and D. G. Long, Microwave Radar and Radiometric Remote Sensing, University of Michigan Press, 2015.
2. Fung, A. K. and K. S. Chen, Microwave Scattering and Emission Models for Users, Artech House, 2010.
3. Tsang, L., J. A. Kong, and R. T. Shin, Theory of Microwave Remote Sensing, Wiley, 1985.
4. Yueh, S., R. Kwok, F. Li, S. Nghiem, and W. Wilson, "Polarimetric passive remote sensing of ocean wind vectors," Radio Science, Vol. 29, No. 4, 799-814, Jul. 1994.
doi:10.1029/94RS00450
5. Irisov, V. G., "Small-slope expansion for thermal and reflected radiation from a rough surface," Waves in Random Media, Vol. 7, 1-10, Jan. 1997.
doi:10.1088/0959-7174/7/1/001
6. Gu, X. X., L. Tsang, H. Braunisch, and P. Xu, "Modeling absorption of rough interface between dielectric and conductive medium," Microwave and Optical Technology Letters, Vol. 49, 7-13, Jan. 2007.
doi:10.1002/mop.22023
7. Chen, K. S., T. D. Wu, L. Tsang, Q. Li, J. C. Shi, and A. K. Fung, "Emission of rough surfaces calculated by the integral equation method with comparison to three-dimensional moment method simulations," IEEE Transactions on Geoscience and Remote Sensing, Vol. 41, 90-101, Jan. 2003.
doi:10.1109/TGRS.2002.807587
8. Johnson, J. T., "A study of ocean-like surface thermal emission and reflection using Voronovich’s small slope approximation," IEEE Transactions on Geoscience and Remote Sensing, Vol. 43, 306-314, Feb. 2005.
doi:10.1109/TGRS.2004.841480
9. Guerin, C. A. and J. T. Johnson, "A simplified formulation for rough surface cross-polarized backscattering under the second-order small-slope approximation," IEEE Transactions on Geoscience and Remote Sensing, Vol. 53, 6308-6314, Nov. 2015.
10. Voronovich, A., "Small-slope approximation for electromagnetic-wave scattering at a rough interface of dielectric half-spaces," Waves in Random Media, Vol. 4, 337-367, Jul. 1994.
11. Johnson, J. and M. Zhang, "Theoretical study of the small slope approximation for ocean polarimetric thermal emission," IEEE Transactions on Geoscience and Remote Sensing, Vol. 37, No. 5, 2305-2316, Sep. 1999.
doi:10.1109/36.789627
12., Irisov and V., "Small-slope expansion for thermal and reflected radiation from a rough surface," Waves in Random Media, Vol. 7, No. 1, 1-10, Jan. 1997.
doi:10.1088/0959-7174/7/1/001
13. Plant, W. J., "A two-scale model of short wind-generated waves and scatterometry," Journal of Geophysical Research: Oceans, Vol. 91, No. C9, 10735-10749, 1986.
doi:10.1029/JC091iC09p10735
14. Johnson, J. T., "An efficient two-scale model for the computation of thermal emission and atmospheric reflection from the sea surface," IEEE Transactions on Geoscience and Remote Sensing, Vol. 44, 560-568, Mar. 2006.
doi:10.1109/TGRS.2005.855999
15. Yueh, S., "Modeling of wind direction signals in polarimetric sea surface brightness temperatures," IEEE Transactions on Geoscience and Remote Sensing, Vol. 35, No. 6, 1400-1418, Nov. 1997.
doi:10.1109/36.649793
16. Lagerloef, G., F. R. Colomb, D. Le Vine, F. Wentz, S. Yueh, C. Ruf, et al. "The aquarius/SAC-D mission: Designed to meet the salinity remote-sensing challenge," Oceanography, Vol. 21, 68-81, Mar. 2008.
doi:10.5670/oceanog.2008.68
17. Le Vine, D. M., E. P. Dinnat, T. Meissner, S. H. Yueh, F. J. Wentz, S. E. Torrusio, et al. "Status of aquarius/SAC-D and aquarius salinity retrievals," IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, Vol. 8, 5401-5415, Dec. 2015.
doi:10.1109/JSTARS.2015.2427159
18. Fore, A. G., S. H. Yueh, W. Q. Tang, B. W. Stiles, and A. K. Hayashi, "Combined active/passive retrievals of ocean vector wind and sea surface salinity with SMAP," IEEE Transactions on Geoscience and Remote Sensing, Vol. 54, 7396-7404, Dec. 2016.
doi:10.1109/TGRS.2016.2601486
19. Yueh, S., W. Q. Tang, A. Fore, A. Hayashi, Y. T. Song, and G. Lagerloef, "Aquarius geophysical model function and combined active passive algorithm for ocean surface salinity and wind retrieval," Journal of Geophysical Research-Oceans, Vol. 119, 5360-5379, Aug. 2014.
doi:10.1002/2014JC009939
20. Yang, J. S., Y. Du, and J. C. Shi, "Polarimetric simulations of bistatic scattering from perfectly conducting ocean surfaces with 3m/s wind speed at L-band," IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, Vol. 9, 1176-1186, Mar. 2016.
doi:10.1109/JSTARS.2015.2443071
21. Johnson, J. T., R. T. Shin, J. A. Kong, L. Tsang, and K. Pak, "A numerical study of ocean polarimetric thermal emission," IEEE Transactions on Geoscience and Remote Sensing, Vol. 37, 8-20, Jan. 1999.
doi:10.1109/36.739089
22. Ao, C. O., P. O. Orondo, Y. Zhang, and J. A. Kong, "Electromagnetic model of thermal emission from foam-covered ocean surface using dense medium radiative transfer theory," IGARSS 2000: IEEE 2000 International Geoscience and Remote Sensing Symposium, Vol. I–VI, Proceedings, 1277-1279, 2000.
23. Soriano, G., C. A. Guerin, and M. Saillard, "Microwave ocean scattering at low-grazing angles with the GMoM," 7th European Radar Conference, 5-8, 2010.
24. Johnson, J. T. and H. T. Chou, "Numerical studies of low grazing angle backscatter from 1D and 2D impedance surfaces," 1998 IEEE International Geoscience and Remote Sensing Symposium (IGARSS), Vol. 4, 2295-2297, 1998.
25. Qiao, T., L. Tsang, D. Vandemark, S. Yueh, T. H. Liao, F. Nouguier, and B. Chapron, "Sea surface radar scattering at L-band based on numerical solution of Maxwell’s equations in 3-D (NMM3D)," IEEE Transactions on Geoscience and Remote Sensing, Vol. 56, No. 6, 3137-3147, Jun. 2018.
doi:10.1109/TGRS.2018.2792432
26. Tsang, L., J. A. Kong, and R. T. Shin, Scattering of Electromagnetic Waves, Vol. 2, Scattering of Electromagnetic Waves: Numerical Simulations, John Wiley & Sons, 2000.
27. Toporkov, J., R. Marchand, and G. Brown, "On the discretization of the integral equation describing scattering by rough conducting surfaces," IEEE Transactions on Antennas and Propagation, Vol. 46, No. 1, 150-161, Jan. 1998.
doi:10.1109/8.655462
28. Tsang, L. and Q. Li, "Numerical solution of scattering of waves by lossy dielectric surfaces using a physics-based two-grid method," Microwave and Optical Technology Letters, Vol. 16, 356-364, Dec. 20, 1997.
29. Canino, L. F., J. J. Ottusch, M. A. Stalzer, J. L. Visher, and S. M. Wandzura, "Numerical solution of the Helmholtz equation in 2D and 3D using a high-order Nystrom discretization," Journal of Computational Physics, Vol. 146, 627-663, Nov. 1, 1998.
30. Gedney, S. D., "On deriving a locally corrected Nystrom scheme from a quadrature sampled moment method," IEEE Transactions on Antennas and Propagation, Vol. 51, 2402-2412, Sep. 2003.
doi:10.1109/TAP.2003.816305
31. Elfouhaily, T., B. Chapron, K. Katsaros, and D. Vandemark, "A unified directional spectrum for long and short wind-driven waves," Journal of Geophysical Research-Oceans, Vol. 102, 15781-15796, Jul. 15, 1997.
32. Qiao, T., L. Tsang, and S. Tan, "Scattering of lossy dielectric surfaces in full wave simulation of Maxwell’s equations with dense grid and neighborhood impedance boundary conditions," 2017 Progress In Electromagnetics Research Symposium — Fall (PIERS — FALL), 3054-3057, Singapore, Nov. 19–22, 2017.
33. Klein, L. A. and C. T. Swift, "Improved model for dielectric-constant of sea-water at microwavefrequencies," IEEE Transactions on Antennas and Propagation, Vol. 25, 104-111, 1977.
doi:10.1109/TAP.1977.1141539
34. Liao, T. H., L. Tsang, S. W. Huang, N. Niamsuwan, S. Jaruwatanadilok, S. B. Kim, et al. "Copolarized and cross-polarized backscattering from random rough soil surfaces from L-band to Ku-band using numerical solutions of Maxwell’s equations with near-field precondition," IEEE Transactions on Geoscience and Remote Sensing, Vol. 54, 651-662, Feb. 2016.
doi:10.1109/TGRS.2015.2451671
35. Tsang, L., I. S. Koh, T. H. Liao, S. W. Huang, X. L. Xu, E. G. Njoku, et al. "Active and passive vegetated surface models with rough surface boundary conditions from NMM3D," IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, Vol. 6, 1698-1709, Jun. 2013.
doi:10.1109/JSTARS.2013.2257694
36. Huang, S. W., L. Tsang, E. G. Njoku, and K. S. Chan, "Backscattering coefficients, coherent reflectivities, and emissivities of randomly rough soil surfaces at L-band for SMAP applications based on numerical solutions of maxwell equations in three-dimensional simulations," IEEE Transactions on Geoscience and Remote Sensing, Vol. 48, 2557-2568, Jun. 2010.
doi:10.1109/TGRS.2010.2040748
37. Camps, A., N. Vall-llossera, N. Duffo, F. Torres, and I. Corbella, "Performance of sea surface salinity and soil moisture retrieval algorithms with different auxiliary datasets in 2-D L-band aperture synthesis interferometric radiometers," IEEE Transactions on Geoscience and Remote Sensing, Vol. 43, 1189-1200, May 2005.
doi:10.1109/TGRS.2004.842096
38. Camps, A., J. Font, M. Vall-Llossera, I. Corbella, N. Duffo, F. Torres, et al. "Determination of the sea surface emissivity at L-band and application to SMOS salinity retrieval algorithms: Review of the contributions of the UPC-ICM," Radio Science, Vol. 43, Jun. 20, 2008.
39. Zhang, C., H. Liu, L. Wu, and J. Wu, "Imaging simulation of the microwave radiometer aboard the micap for sea surface salinity measurement," 2015 IEEE International Geoscience and Remote Sensing Symposium (IGARSS), 3469-3472, 2015.
doi:10.1109/IGARSS.2015.7326567
40. Misra, S., S. Brow, S. Yueh, and T. Lee, "Enabling the next generation of salinity, sea surface temperature and wind measurements from space: Instrument challenges," Progress In Electromagnetics Research Symposium Abstracts, 319, Singapore, Nov. 19–22, 2017.
41. Brow, S., S. Misra, S. Yueh, and T. Lee, "A next generation spaceborne ocean state observatory: Surface salinity, temperature and ocean winds from equator to Pole," Progress In Electromagnetics Research Symposium Abstracts, 320, Singapore, Nov. 19–22, 2017.