Testing the use of aeromagnetic data for the determination of Curie depth in California

Author:

Ross Hannah E.12,Blakely Richard J.12,Zoback Mark D.12

Affiliation:

1. Stanford University, Department of Geophysics, Mitchell Building, 397 Panama Mall, Stanford, California 94305-2215. .

2. United States Geological Survey, Western Region Earth Surfaces Processes Team, 345 Middlefield Road, MS 989, Menlo Park, California 94025. .

Abstract

Using California as a test region, we have examined the feasibility of using Curie-isotherm depths, estimated from magnetic anomalies, as a proxy for lithospheric thermal structure. Our method follows previous studies by dividing a regional aeromagnetic database into overlapping subregions and analyzing the power-density spectrum of each subregion, but we have improved on previous studies in two important ways: We increase subregion dimensions in a stepwise manner until long-wavelength anomalies are appropriately sampled, and each subregion spectrum determined from the magnetic anomalies is manually fit with a theoretical expression that directly yields the depth to the bottom of the magnetic layer. Using this method, we have obtained Curie-isotherm depths for California that show a general inverse correlation with measured heat flow, as expected. The Coast Ranges of California are characterized by high heat flow [Formula: see text] and shallow Curie depths [Formula: see text], whereas the Great Valley has low heat flow (less than [Formula: see text] and deeper Curie depths [Formula: see text].

Publisher

Society of Exploration Geophysicists

Subject

Geochemistry and Petrology,Geophysics

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