Quantifying the Structure and Extension Rate of the Linfen Basin, Shanxi Rift System Since the Latest Miocene: Implications for Continental Magma‐Poor Rifting

Author:

Su Peng12ORCID,He Honglin12ORCID,Liu Yiduo3ORCID,Shi Feng12,Granger Darryl E.45ORCID,Kirby Eric6ORCID,Luo Lan5,Han Fei7,Lu Renqi1ORCID

Affiliation:

1. State Key Laboratory of Earthquake Dynamics Institute of Geology China Earthquake Administration Beijing China

2. Shanxi Taiyuan Continental Rift Dynamics National Observation and Research Station Taiyuan China

3. Key Laboratory of Mountain Hazards and Surface Processes Institute of Mountain Hazards and Environment Chinese Academy of Sciences Chengdu China

4. Department of Earth, Atmospheric, and Planetary Sciences Purdue University West Lafayette IN USA

5. Department of Physics Purdue Rare Isotope Measurement Laboratory Purdue University West Lafayette IN USA

6. Department of Earth, Marine and Environmental Sciences University of North Carolina Chapel Hill NC USA

7. Yunnan Key Laboratory of Earth System Science Yunnan University Kunming China

Abstract

AbstractThe formation of magma‐poor continental rifts is an enigmatic process, as the weakening mechanism(s) for cratonic lithosphere remains uncertain in the absence of elevated lithospheric temperature. One view links weakening to melts hidden at depth, while another ascribes it to pre‐existing weaknesses. Long‐term extensional rates also influence lithospheric strength and rift evolution. We target the Linfen Basin (LB) in the magma‐poor Shanxi Rift System (SRS) in the North China Craton to understand these components. We apply cosmogenic 26Al/10Be burial dating on 14 core samples at different depths from three deep boreholes in the basin and obtain six valid burial ages ranging from 2.37+1.18/−1.21 to 5.86+inf/−1.37 Ma. We further re‐interpret a seismic reflection profile and quantify the geometry and amount of extension by forward structural modeling with multiple constraints based on extensional fault‐bend folding theory. The timing of the basal sedimentation is estimated to be ∼6.1 and ∼4.2 Ma in the southern and northern portions, respectively, indicating diachronous, northward‐propagating rifting. The amount and mean rate of extension are ∼3.6 km and ∼0.9 km/Myr, respectively. The basin depths increasing northward indicates the clockwise rotation of the basin. We propose a basin‐scale non‐rigid transtensional bookshelf faulting model to explain the rotation patterns of the circum‐Ordos basins. We argue that the inherited structures weaken the cratonic lithosphere of the SRS, and the low extension rate contributes to its magma‐poor nature. We propose a lithospheric‐scale evolution model for the LB, invoking the inherited crustal weakness, low extension rate, and lower lithosphere counterflow.

Funder

Institute of Geology, China Earthquake Administration

National Natural Science Foundation of China

Publisher

American Geophysical Union (AGU)

Subject

Geochemistry and Petrology,Geophysics

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