Three‐dimensional displacement field of the 2015 M w 8.3 Illapel earthquake (Chile) from across‐ and along‐track Sentinel‐1 TOPS interferometry
2016; American Geophysical Union; Volume: 43; Issue: 6 Linguagem: Inglês
10.1002/2016gl067954
ISSN1944-8007
AutoresRaphaël Grandin, Émilie Klein, Marianne Métois, C. Vigny,
Tópico(s)Landslides and related hazards
ResumoAbstract Wide‐swath imaging has become a standard acquisition mode for radar missions aiming at applying synthetic aperture radar interferometry (InSAR) at global scale with enhanced revisit frequency. Increased swath width, compared to classical Stripmap imaging mode, is achieved at the expense of azimuthal resolution. This makes along‐track displacements, and subsequently north‐south displacements, difficult to measure using conventional split‐beam (multiple‐aperture) InSAR or cross‐correlation techniques. Alternatively, we show here that the along‐track component of ground motion can be deduced from the double difference between backward and forward looking interferograms within regions of burst overlap. “Burst overlap interferometry” takes advantage of the large squint angle diversity of Sentinel‐1 (∼1°) to achieve subdecimetric accuracy on the along‐track component of ground motion. We demonstrate the efficiency of this method using Sentinel‐1 data covering the 2015 M w 8.3 Illapel earthquake (Chile) for which we retrieve the full 3‐D displacement field and validate it against observations from a dense network of GPS sensors.
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