Isaac Kramer, Yuval Bayer, and Yair Mau. The Sustainability of Treated Wastewater Irrigation: The Impact of Hysteresis on Saturated Soil Hydraulic Conductivity . Water Resources Research, 2022.
doi: 10.1029/2021WR031307
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@article{kramer2022sustainability,doi={10.1029/2021WR031307},url={https://doi.org/10.1029/2021WR031307},year={2022},author={Isaac Kramer and Yuval Bayer and Yair Mau},title={The Sustainability of Treated Wastewater Irrigation: The Impact of Hysteresis on Saturated Soil Hydraulic Conductivity},journal={Water Resources Research},}
Taiwo Adeyemo, Isaac Kramer, Guy J. Levy, and Yair Mau. Salinity and sodicity can cause hysteresis in soil hydraulic conductivity. Geoderma, 2022.
doi: 10.1016/j.geoderma.2022.115765
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@misc{adeyemo2022salinity,title={Salinity and sodicity can cause hysteresis in soil hydraulic conductivity},author={Taiwo Adeyemo and Isaac Kramer and Guy J. Levy and Yair Mau},year={2022},journal={Geoderma}}
Yuval R. Zelnik, Yair Mau, Moshe Shachak, and Ehud Meron. High-integrity human intervention in ecosystems: Tracking self-organization modes. PLOS Computational Biology, 2021.
doi: 10.1371/journal.pcbi.1009427
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@article{zelnik2021high,doi={10.1371/journal.pcbi.1009427},url={https://doi.org/10.1371/journal.pcbi.1009427},year={2021},author={Yuval R. Zelnik and Yair Mau and Moshe Shachak and Ehud Meron},title={High-integrity human intervention in ecosystems: Tracking self-organization modes},journal={PLOS Computational Biology},volume={17},number={9},pages={e1009427}}
Isaac Kramer, Yuval Bayer, Taiwo Adeyemo, and Yair Mau. Hysteresis in soil hydraulic conductivity as driven by salinity and sodicity: a modeling framework . HESS, 2021.
doi: 10.5194/hess-25-1993-2021
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@article{kramer2020hysteresis,doi={10.5194/hess-25-1993-2021},url={https://doi.org/10.5194/hess-25-1993-2021},year={2021},author={Isaac Kramer and Yuval Bayer and Taiwo Adeyemo and Yair Mau},title={Hysteresis in soil hydraulic conductivity as driven by salinity and sodicity: a modeling framework},journal={Hydrology and Earth System Sciences},volume={25},number={4},pages={1993--2008}}
Isaac Kramer and Yair Mau. Soil degradation risks assessed by the SOTE model for salinity and sodicity. Water Resources Research, 2020.
doi: 10.1029/2020WR027456
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@article{kramer2020soil,doi={10.1029/2020WR027456},url={https://doi.org/10.1029/2020WR027456},year={2020},publisher={Wiley},volume={56},number={10},author={Isaac Kramer and Yair Mau},title={Soil degradation risks assessed by the SOTE model for salinity and sodicity},journal={Water Resources Research}}
Xing Chen, Mukesh Kumar, Daniel de B. Richter, and Yair Mau. Impact of gully incision on hillslope hydrology. Hydrological Processes, 2020.
doi: 10.1002/hyp.13845
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@article{chen2020impact,doi={10.1002/hyp.13845},url={https://doi.org/10.1002/hyp.13845},year={2020},publisher={Wiley},volume={34},number={19},pages={3848--3866},author={Xing Chen and Mukesh Kumar and Daniel B. Richter and Yair Mau},title={Impact of gully incision on hillslope hydrology},journal={Hydrological Processes}}
Avigail Kaner, Yakir Preisler, José M. Grünzweig, and Yair Mau. Internal water storage buffering maintains plant function under drought as described by a general hydraulic model. bioRxiv, 2020.
doi: 10.1101/2020.02.11.943563
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@article{kaner2020internal,doi={10.1101/2020.02.11.943563},url={https://doi.org/10.1101/2020.02.11.943563},year={2020},publisher={Cold Spring Harbor Laboratory},volume={},number={},pages={},author={Avigail Kaner and Yakir Preisler and Jos{\'{e}} M Gr\"{u}nzweig and Yair Mau},title={Internal water storage buffering maintains plant function under drought as described by a general hydraulic model},journal={}}
Yair Mau and Amilcare Porporato. Optimal control solutions to sodic soil reclamation. Advances in Water Resources, 91:37–45, 2016.
doi: 10.1016/j.advwatres.2016.02.014
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@article{mau2016optimal,doi={10.1016/j.advwatres.2016.02.014},year={2016},publisher={Elsevier {BV}},volume={91},pages={37--45},author={Yair Mau and Amilcare Porporato},title={Optimal control solutions to sodic soil reclamation},journal={Advances in Water Resources}}
Amilcare Porporato, Xue Feng, Stefano Manzoni, Yair Mau, Anthony J. Parolari, and Giulia Vico. Ecohydrological modeling in agroecosystems: Examples and challenges. Water Resources Research, 51(7):5081–5099, 2015.
doi: 10.1002/2015WR017289
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@article{porporato2015ecohydrological,doi={10.1002/2015wr017289},year={2015},publisher={Wiley-Blackwell},author={Amilcare Porporato and Xue Feng and Stefano Manzoni and Yair Mau and Anthony J. Parolari and Giulia Vico},title={Ecohydrological modeling in agroecosystems: Examples and challenges},journal={Water Resources Research},volume={51},number={7},pages={5081--5099}}
Yair Mau and Amilcare Porporato. A dynamical system approach to soil salinity and sodicity. Advances in Water Resources, 83:68–76, 2015.
doi: 10.1016/j.advwatres.2015.05.010
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@article{mau2015dynamical,year={2015},publisher={Elsevier {BV}},volume={83},pages={68--76},author={Yair Mau and Amilcare Porporato},title={A dynamical system approach to soil salinity and sodicity},journal={Advances in Water Resources},doi={10.1016/j.advwatres.2015.05.010}}
Yair Mau, Lev Haim, and Ehud Meron. Reversing desertification as a spatial resonance problem. Physical Review E, 91(1):012903, 2015.
doi: 10.1103/PhysRevE.91.012903
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@article{mau2015reversing,title={Reversing desertification as a spatial resonance problem},author={Yair Mau and Lev Haim and Ehud Meron},journal={Physical Review E},volume={91},number={1},pages={012903},year={2015},publisher={APS},doi={10.1103/physreve.91.012903},}
Yair Mau, Xue Feng, and Amilcare Porporato. Multiplicative jump processes and applications to leaching of salt and contaminants in the soil. Physical Review E, 90(5):052128, 2014.
doi: 10.1103/PhysRevE.90.052128
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@article{mau2014multiplicative,title={Multiplicative jump processes and applications to leaching of salt and contaminants in the soil},author={Yair Mau and Xue Feng and Amilcare Porporato},journal={Physical Review E},volume={90},number={5},pages={052128},year={2014},publisher={APS},doi={10.1103/physreve.90.052128},}
Lev Haim, Yair Mau, and Ehud Meron. Spatial forcing of pattern-forming systems that lack inversion symmetry. Physical Review E, 90(2):022904, 2014.
doi: 10.1103/PhysRevE.90.022904
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@article{haim2014spatial,title={Spatial forcing of pattern-forming systems that lack inversion symmetry},author={Lev Haim and Yair Mau and Ehud Meron},journal={Physical Review E},volume={90},number={2},pages={022904},year={2014},publisher={APS},doi={10.1103/physreve.90.022904},}
Yair Mau, Lev Haim, Aric Hagberg, and Ehud Meron. Competing resonances in spatially forced pattern-forming systems. Physical Review E, 88(3): 032917, 2013.
doi: 10.1103/PhysRevE.88.032917
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@article{mau2013competing,title={Competing resonances in spatially forced pattern-forming systems},author={Yair Mau and Lev Haim and Aric Hagberg and Ehud Meron},journal={Physical Review E},volume={88},number={3},pages={032917},year={2013},publisher={APS},doi={10.1103/physreve.88.032917},}
Yair Mau, Aric Hagberg, and Ehud Meron. Spatial periodic forcing can displace patterns it is intended to control. Physical Review Letters, 109 (3):034102, 2012.
doi: 10.1103/PhysRevLett.109.034102
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@article{mau2012spatial,title={Spatial periodic forcing can displace patterns it is intended to control},author={Yair Mau and Aric Hagberg and Ehud Meron},journal={Physical Review Letters},volume={109},number={3},pages={034102},year={2012},publisher={APS},doi={10.1103/physrevlett.109.034102},}
@article{mau2009dual,title={Dual-mode spiral vortices},author={Yair Mau and Aric Hagberg and Ehud Meron},journal={Physical Review E},volume={80},number={6},pages={065203},year={2009},publisher={APS},doi={10.1103/physreve.80.065203},}
Tip: find the BibTeX of any publication by copying its doi here: doi2bib.org.
Theses
PhD Thesis
Title:“Pattern Formation in Spatially Forced Systems: Application to Vegetation Restoration” Advisor:Prof. Ehud Meron.
The Physics Department, The Ben-Gurion University of the Negev, Israel. PDF