Advanced Search
Displaying assets from 1 to 30 out of 12
-
Description Station codes and coordinates of earthquake stations of the DESIRE temporary network.
Article Title: Crustal structure of the Dead Sea Basin (DSB) from a receiver function analysis
Publication Title: Geophysical Journal International -
Description Location map of seismic stations in the region of the Dead Sea Basin. Stations are grouped into three regions: EAST, LISAN and WEST.
Article Title: Crustal structure of the Dead Sea Basin (DSB) from a receiver function analysis
Publication Title: Geophysical Journal International -
Description Tectonic map, showing the area studied and the wide‐angle reflection/refraction (WRR) profile across the Dead Sea Basin (Mechie et al. 2009). The blue box shows the area studied during the DESERT...
Article Title: Crustal structure of the Dead Sea Basin (DSB) from a receiver function analysis
Publication Title: Geophysical Journal International -
Description Comparison of depth determinations for the sediments and the Moho between the near‐vertical incidence and wide‐angle controlled‐source techniques and receiver functions. For the receiver functions,...
Article Title: Crustal structure of the Dead Sea Basin (DSB) from a receiver function analysis
Publication Title: Geophysical Journal International -
Description Distribution of teleseismic events with magnitude greater than 5.6 used in this study for receiver function analysis. The equidistant circles show distances in degrees to the DESIRE network in the...
Article Title: Crustal structure of the Dead Sea Basin (DSB) from a receiver function analysis
Publication Title: Geophysical Journal International -
Description Two dimensional P‐ and S‐wave velocity models used to generate synthetics of converted phases and their multiples. Intracrustal boundaries at which the velocity jump does not exceed 0.1 km s−1 are...
Article Title: Crustal structure of the Dead Sea Basin (DSB) from a receiver function analysis
Publication Title: Geophysical Journal International -
Description (a–e): Plot of all receiver functions of the DESIRE temporary network in three groups (EAST, LISAN and WEST). In a–c traces are plotted according to longitude and latitude, respectively, whereas in...
Article Title: Crustal structure of the Dead Sea Basin (DSB) from a receiver function analysis
Publication Title: Geophysical Journal International -
Description Comparison between the synthetic and the observed receiver functions. The synthetic traces are calculated with a 2‐D finite‐difference method. There are examples for stations from all three groups,...
Article Title: Crustal structure of the Dead Sea Basin (DSB) from a receiver function analysis
Publication Title: Geophysical Journal International -
Description (a–c): Delay time maps for the first conversion from the sediments and the Moho, and the lower crustal multiple for all DESIRE seismic stations. Open circles represent stations that were difficult...
Article Title: Crustal structure of the Dead Sea Basin (DSB) from a receiver function analysis
Publication Title: Geophysical Journal International -
Description (a–d) Receiver functions for the stations JB01, JB07, JB37 and IS41 situated in the Dead Sea Basin area. The traces are moveout‐corrected for PS conversions underneath the stations. The abscissa...
Article Title: Crustal structure of the Dead Sea Basin (DSB) from a receiver function analysis
Publication Title: Geophysical Journal International -
Description Sketch showing where the lower crustal discontinuity (LCD) is present or absent in the vicinity of the Dead Sea Transform (DST) both 18 Ma ago and at the present‐day.
Article Title: Crustal structure of the Dead Sea Basin (DSB) from a receiver function analysis
Publication Title: Geophysical Journal International -
Description (a, b) Receiver functions of the station JB01 using P‐to‐S and S‐to‐P techniques, respectively. The left panel (a) shows the P‐to‐S receiver functions using a highpass 10 s filter. The right panel...
Article Title: Crustal structure of the Dead Sea Basin (DSB) from a receiver function analysis
Publication Title: Geophysical Journal International