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March 12, 2026Geophysical Research Letters0 citationsOpen Access

Three Centuries of ENSO Variability Inferred From Muna, Sulawesi, Indonesia Teak δ 18 O: Limited Response to Radiative Forcing

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MEM. N. EvansSHS. H. S. HerhoJWJ. C. Wollney

Key Points

  • This study aims to analyze three centuries of ENSO variability using tree ring-derived oxygen isotopes from Muna, Indonesia.
  • Derived oxygen isotope anomaly records from teak tree ring data.
  • Analyzed correlation with the NINO34 sea surface temperature index (1856–2005).
  • Examined responses of ENSO events to volcanic eruptions (1668–1900) and solar activity (1751–2005).
  • Assessed changes in ENSO event distribution and variability over three centuries.
  • Significant correlation found between oxygen isotope records and NINO34 index.
  • Tendency toward ENSO warm phase events noted following volcanic eruptions.
  • No changes detected in ENSO event distribution over the past three centuries.
  • ENSO amplitude and frequency response to greenhouse forcing appear within natural variability.

Abstract

Abstract We present an annual resolution oxygen isotope anomaly (O c ) record, derived from eight teak ( Tectona grandis L.f. ) tree ring‐dated O c series from Muna, Southeast Sulawesi, Indonesia (5.3S, 123E). The record is significantly correlated (, edf = 82, p < 0.01) with the October–September averaged NINO34 sea surface temperature index, 1856–2005. We find a significant tendency toward ENSO warm phase events in the year following volcanic eruptions, 1668–1900, n = 29 events, p = 0.05, no change arising from solar activity, 1751–2005, and no change in ENSO event distribution, 1681–2005. The latter result suggests either a weak forced signature is not yet emergent, given substantial observational uncertainty, or else that the response of ENSO amplitude and/or event frequency to greenhouse forcing over the past three centuries is within the envelope of unforced variability. These findings are consistent with some paleoclimate reconstructions, but contrast with others and some model projections of increased ENSO variability under recent anthropogenic forcing.

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Cite This Study

Evans et al. (2026) studied this question.

synapsesocial.com/papers/69b2584996eeacc4fcec7c9bhttps://doi.org/10.1029/2025gl117991
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