HR: 0830h
AN: GP11C-0273 [PDF]
TI: Paleomagnetism of Eocene Intrusive Rocks, Black Hills of South Dakota and Wyoming
AU: * Housen, B A
EM: bernieh@cc.wwu.edu
AF: Geology Dept., Western Washington University, 516 High St, Bellingham, WA 98225-9080 United States
AU: Fawcett, T C
EM: fawcettc@hotmail.com
AF: Geology Dept., Western Washington University, 516 High St, Bellingham, WA 98225-9080 United States
AU: Gregiore, P
EM: geophyllis@hotmail.com
AF: Geology Dept., Western Washington University, 516 High St, Bellingham, WA 98225-9080 United States
AB:
The Black Hills of South Dakota and Wyoming are a large Precambrian-cored Laramide uplift. Intruding the Black Hills are a
diverse suite of igneous rocks, which include phonolites, trachytes, latites, garnet-bearing rhyolites, and pyroxenites.
These intrusive bodies range in size from several meter outcrop-scale bodies, to several 10s of km wide intrusive complexes.
New geochronology ($^{40}$Ar-$^{39}$Ar) data indicate many of these intrusive rocks are between 58 and 45 Ma in age (Duke at
al, 2002). As part of a larger paleomagnetic study aimed at Jurassic strata surrounding the Black Hills, a collection of 20
sites and 145 samples of the Eocene intrusive rocks was made. A combination of alternating field, thermal, and liquid
nitrogen step-wise demagnetization revealed that, with a few exceptions, these rocks have two well-defined magnetization
components. The first-removed component is interpreted to be a present (dipole) field magnetization, and is removed by 10 to
30 mT a.f., or 200 C thermal demagnetization steps. The second-removed components have either positive or negative
inclinations, and are defined by demagnetization steps between 30 and 200 mT a.f., or 300 to 630 C thermal demagnetization
steps. These components are interpreted to be ancient, presumably Eocene, magnetizations. A preliminary mean of the
normal-polarity sites is D=352, I=59.3, k=26.7, a95=18.2, N=4, and of the reverse-polarity sites is D=154.9, I=-61.3, k=23.1,
a95=18.2, N=4. The combined mean direction is D=344.9, I=60.3, k=28.8, a95=10.5, N=8. Two sites of rhyolites at Mt. Theodore
Roosevelt have well-defined magnetization components, but either mixed polarity (Site 99Trr1), or reverse-polarity with what
might be a transitional-field direction (D=27.7, I=-37.4, k=18.0, a95=18.6, n=5), and are not included in the calculation of
means. The magnetizations recorded by these Eocene rocks are essentially identical to the expected direction for the Black
Hills calculated from the Diehl et al., 1983 Eocene reference pole for North America. This result indicates that the Black
Hills have experienced no rotation or large-scale tilting since the Eocene, that these intrusive rocks are suitable for
additional study of geomagnetic field behavior. In addition, the mean direction reported here is similar to the Jurassic
Morrison Formation from the Black Hills (D=349.7, I=61.8, k=87.4, a95=4.5, N=13), supporting an assertion that the Jurassic
rocks had been remagnetized during the Eocene.
DE: 1525 Paleomagnetism applied to tectonics (regional, global)
DE: 1533 Remagnetization
DE: 1535 Reversals (process, timescale, magnetostratigraphy)
SC: Geomagnetism and Paleomagnetism [GP]
MN: 2003 Fall Meeting