Area of research
Oceanography · Atmospheric Science
Research interest
Research interests include Geology, Halite, Environmental science, Fluvial, Evaporite, and Mineralogy.
Lake-water-temperature regulation under diurnal and annual cycles of environmental forcing, Agamon Hula, Israel
Geomorphological Response of Alluvial Streams to Flood Events during Base-Level Lowering: Insights from Drone-Based Photogrammetric Surveys in Dead Sea Tributaries
Hourly to weekly variations in halite precipitation from the hypersaline Dead Sea: The role of evaporation, water cooling and freshwater plume stability
Air–sea interactions in stable atmospheric conditions: lessons from the desert semi-enclosed Gulf of Eilat (Aqaba)
Fluid Mechanics of the Dead Sea
Nucleation-assisted microthermometry: A novel application to fluid inclusions in halite
Holocene humid periods of the Levant – evidence from Dead Sea lake-levels
Rare earths release from dissolving atmospheric dust and their accumulation into crystallising halite: The Dead Sea example
A mechanistic approach for interpreting hydroclimate from halite‐bearing sediments
Century‐scale sequences and density‐flow deltas of the late Holocene and modern Dead Sea coast, Israel
Synoptic-scale to mesoscale atmospheric circulation connects fluvial and coastal gravel conveyors and directional deposition of coastal landforms in the Dead Sea basin
Coral Reef Coupling to the Atmospheric Boundary Layer Through Exchanges of Heat, Moisture, and Momentum: Case Studies From Tropical and Desert Fringing Coral Reefs
The modern wave-induced coastal staircase morphology along the western shores of the Dead Sea
Air-water interactions regulating water temperature of lakes: Direct observations (Agamon Hula, Israel) and analytical solutions
Identifying an Evaporative Thermal Refugium for the Preservation of Coral Reefs in a Warming World—The Gulf of Eilat (Aqaba)
Direct Measurement of CO<sub>2</sub> Air‐Sea Exchange Over a Desert Fringing Coral Reef, Gulf of Eilat (Aqaba), Israel
Synoptic- to meso-scale circulation connects fluvial and coastal gravel conveyors and directional deposition of coastal landforms in the Dead Sea basin
From straight to deeply incised meandering channels: Slope impact on sinuosity of confined streams
How Does Coastal Gravel Get Sorted Under Stormy Longshore Transport?
Criteria for the recognition of clastic halite: The modern Dead Sea shoreline
Hydrostatic Densitometer for Monitoring Density in Freshwater to Hypersaline Water Bodies
Sedimentology and stratigraphy of a modern halite sequence formed under Dead Sea level fall
Hydroclimatic Controls on Salt Fluxes and Halite Deposition in the Dead Sea and the Shaping of “Salt Giants”
Combined LA-ICP-MS and cryo-SEM-EDS: An improved technique for quantitative analysis of major, minor, and trace elements in fluid inclusions in halite
Trace element fractionation through halite crystallisation: Geochemical mechanisms and environmental implications
The demise of a ‘salt giant’ driven by uplift and thermal dissolution
Fluvial incision and coarse gravel redistribution across the modern Dead Sea shelf as a result of base‐level fall
Effect of Water Surface Salinity on Evaporation: The Case of a Diluted Buoyant Plume Over the Dead Sea
Seasonal and diurnal evaporation from a deep hypersaline lake: The Dead Sea as a case study
Halite focusing and amplification of salt layer thickness: From the Dead Sea to deep hypersaline basins