PofoliaShared via Pofolia

Geology· 2026Q1

Tropical Indo-Pacific intermediate waters remain in a Little Ice Age cold state

Xuefei Chen, Kaiwen Ta, Xuefeng Wang, Deng Wenfeng et al.

Short summary

Intermediate waters (1345m) in the South China Sea cooled 1.0 ± 0.2 °C from the Medieval Climate Anomaly to the Little Ice Age, and have not recovered to Medieval levels, indicating a persistent cold state.

AI-generated from the title and abstract; the full text is not read.

Key points

  • A cold-water coral from 1345m in the South China Sea shows a 1.0 ± 0.2 °C cooling from the Medieval Climate Anomaly (MCA) to the Little Ice Age (LIA).
  • Intermediate water temperatures have not recovered to MCA levels, persisting in a LIA cold state into the early Current Warm Period.
  • Sea-surface temperatures have recovered, demonstrating a pronounced vertical thermal decoupling.
  • Model simulations (CESM Last Millennium Ensemble) corroborate the observed temperature trends.

AI-generated from the title and abstract; the full text is not read.

Abstract

Model simulations predict that the deep Pacific Ocean still harbors cooling from the Little Ice Age (LIA; ca. 1450 to 1850 CE), implying vast unrealized heat uptake. Yet proxy records capable of testing this prediction at intermediate depths over the past millennium remain scarce across the Pacific. We address this gap using Li/Mg thermometry on a living cold-water coral from 1345 m in the South China Sea, with U-Th dating confirming continuous growth from the Medieval Climate Anomaly (MCA; ca. 850 to 1250 CE) to present. Li/Mg data reveal a cooling of 1.0 ± 0.2 °C from the MCA to the LIA, with the trend persisting at a reduced rate into the early Current Warm Period (ca. 1850 CE to present) and no recovery to MCA levels, a pattern also captured by Community Earth System Model (CESM) Last Millennium Ensemble simulations. In contrast, sea-surface temperatures have recovered from LIA levels, revealing a pronounced vertical thermal decoupling. These results demonstrate that deeper intermediate waters beneath the Indo-Pacific Warm Pool remain in a LIA cold state, implying that the ocean interior’s heat uptake capacity is far from exhausted and that recent increases in intermediate-depth heat content likely mark the onset of a protracted equilibration process rather than the approach to a new steady state.

The authors' abstract, as published at the source. Geology, 2026 · DOI ↗

TakeawaysPremium
Ask the paperFree account

Continue with a free account

Ask the paper: 3 free questions a day about this paper; save it, get its citation, new summaries every day for your field. Takeaways are Premium.

Continue free on the web

Sign in with Google or Apple; no card needed. You come back to this paper.

On your phone:

Field: Geography, Planning and Development

Geography, Planning and DevelopmentSocial Sciences