All Stories

  1. Sedimentary basin exploration with receiver functions: Seismic structure and anisotropy of the Dublin Basin (Ireland)
  2. Seismic swarms and diffuse fracturing within Triassic evaporites fed by deep degassing along the low-angle Alto Tiberina normal fault (central Apennines, Italy)
  3. Crustal structure and deformation across a mature slab tear zone: the case of southern Tyrrhenian subduction (Italy)
  4. Lithospheric fault and kinematic decoupling of the Apennines system across the Pollino range
  5. A semi-automated method for the detection of seismic anisotropy at depth via receiver function analysis
  6. The structure of the Moho in the Northern Apennines: Evidence for an incipient slab tear fault?
  7. Local three-dimensional earthquake tomography by trans-dimensional Monte Carlo sampling
  8. Crustal and upper mantle responses to lithospheric segmentation in the northern Apennines
  9. Trans-dimensional Monte Carlo sampling applied to the magnetotelluric inverse problem
  10. The fate of the downgoing oceanic plate: Insight from the Northern Cascadia subduction zone
  11. Apulian crust: Top to bottom
  12. Orogen-parallel variability in 3D seismicity distribution, Northern Apennines (Italy): Evidence for a slab tear fault?
  13. The 2012 Emilia seismic sequence (Northern Italy): Imaging the thrust fault system by accurate aftershock location
  14. High frequency seismic waves and slab structures beneath Italy
  15. The Deep Structure of the Larderello-travale Geothermal Field (Italy) from Integrated, Passive Seismic Investigations
  16. High Frequency Receiver Functions in the Dublin Basin: Application to a Potential Geothermal Site
  17. Insights into the evolution of the Italian lithospheric structure from S receiver function analysis
  18. Erosion of the continental lithosphere at the cusps of the Calabrian arc: Evidence fromSreceiver functions analysis
  19. Fluid migration in continental subduction: The Northern Apennines case study
  20. Control of the 2009 L'Aquila earthquake, central Italy, by a high-velocity structure: A receiver function study
  21. Mapping seismic anisotropy using harmonic decomposition of receiver functions: An application to Northern Apennines, Italy
  22. Temporal variation of seismic velocity and anisotropy before the 2009 MW6.3 L'Aquila earthquake, Italy
  23. Shear-velocity and anisotropy structure of a retreating extensional forearc (Tuscany, Italy) from receiver functions inversion
  24. Receiver function inversion by trans-dimensional Monte Carlo sampling
  25. Analysis of small magnitude seismic sequences along the Northern Apennines (Italy)
  26. The 2009 L'Aquila (central Italy) MW6.3 earthquake: Main shock and aftershocks
  27. Moho depth andVp/Vsratio in peninsular Italy from teleseismic receiver functions
  28. Bayesian source inference of the 1993-1997 deformation at Mount Etna (Italy) by numerical solutions
  29. Crustal structure and Moho depth profile crossing the central Apennines (Italy) along the N42° parallel
  30. Mantle wedge anisotropy in Southern Tyrrhenian Subduction Zone (Italy), from receiver function analysis
  31. Seismic structure beneath Mt Vesuvius from receiver function analysis and local earthquakes tomography: evidences for location and geometry of the magma chamber
  32. Crustal structure above a retreating trench: Receiver function study of the northern Apennines orogen
  33. Deep structure of the Colli Albani volcanic district (central Italy) from receiver functions analysis
  34. Crustal structure at colliding plates boundary from receiver functions analysis: A close look beneath the northern Apennines (Italy)
  35. Numerical inversion of deformation caused by pressure sources: application to Mount Etna (Italy)
  36. Crustal structure in the Southern Apennines from teleseismic receiver functions
  37. Possible fault plane in a seismic gap area of the southern Apennines (Italy) revealed by receiver function analysis
  38. Mantle viscosity inference: a comparison between simulated annealing and neighbourhood algorithm inversion methods
  39. Modeling Earth's post-glacial rebound
  40. Crustal Structure and Moho Geometry beneath the Northern Apennines (Italy)