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  • 1
    Publication Date: 2019
    Description: Abstract Numerous studies have been conducted on the Holocene climatic evolution of arid central Asia (ACA) using various geological proxies. However, the quality of the age control and the temporal resolution of the proxy records used make it difficult to characterize hydroclimatic changes on centennial‐ to multi‐decadal timescales. Here, we present a stalagmite δ18O record from Baluk cave in Xinjiang, NW China, in ACA, which has an average 22.8‐yr resolution and provides a record of inferred hydroclimatic changes from 8.4 to 2.7 ka. Abrupt hydroclimatic shifts are evident during the following intervals: 2.75‐2.90 ka, 3.25‐3.35 ka, 3.75‐3.85 ka, 4.45‐4.55 ka, 4.75‐4.90 ka, 5.05‐5.15 ka, 5.2‐5.3 ka, 5.4‐5.5 ka, 5.9‐6.0 ka, 6.2‐6.3 ka, 6.4‐6.5 ka, 6.8‐6.9 ka, 7.1‐7.6 ka, 7.85‐7.95 ka and 8.05‐8.25 ka. Notably, an overall in‐phase relationship is observed between the hydroclimatic variations and change in solar activity, and the results of spectral analysis suggest the presence of the Eddy (~1080 yr), de Vries (~205 yr) and Gleissberg (~88‐102 yrs) cycles. This indicates a linkage between solar activity and hydroclimatic changes in ACA on centennial‐ to multi‐decadal scales during the Holocene. We suggest that the influence of solar activity on hydroclimatic changes in ACA occurs via its effects on North Atlantic sea surface temperature (SST), North Atlantic Oscillation (NAO), northern high‐latitude regional temperatures, and via direct heating. The relationship suggests that solar activity may play an important role in determining future hydroclimatic changes in ACA.
    Print ISSN: 2169-897X
    Electronic ISSN: 2169-8996
    Topics: Geosciences , Physics
    Published by Wiley on behalf of American Geophysical Union (AGU).
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