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DOI10.3847/PSJ/ad226d
Fermi Resonance and the Quantum Mechanical Basis of Global Warming
发表日期2024
EISSN2632-3338
起始页码5
结束页码3
卷号5期号:3
英文摘要Although the scientific principles of anthropogenic climate change are well-established, existing calculations of the warming effect of carbon dioxide rely on spectral absorption databases, which obscures the physical foundations of the climate problem. Here, we show how CO2 radiative forcing can be expressed via a first-principles description of the molecule's key vibrational-rotational transitions. Our analysis elucidates the dependence of carbon dioxide's effectiveness as a greenhouse gas on the Fermi resonance between the symmetric stretch mode nu 1 and bending mode nu 2. It is remarkable that an apparently accidental quantum resonance in an otherwise ordinary three-atom molecule has had such a large impact on our planet's climate over geologic time, and will also help determine its future warming due to human activity. In addition to providing a simple explanation of CO2 radiative forcing on Earth, our results may have implications for understanding radiation and climate on other planets.
语种英语
WOS研究方向Astronomy & Astrophysics
WOS类目Astronomy & Astrophysics
WOS记录号WOS:001182049300001
来源期刊PLANETARY SCIENCE JOURNAL
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/291841
作者单位Harvard University; Harvard University; University of Reading
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GB/T 7714
. Fermi Resonance and the Quantum Mechanical Basis of Global Warming[J],2024,5(3).
APA (2024).Fermi Resonance and the Quantum Mechanical Basis of Global Warming.PLANETARY SCIENCE JOURNAL,5(3).
MLA "Fermi Resonance and the Quantum Mechanical Basis of Global Warming".PLANETARY SCIENCE JOURNAL 5.3(2024).
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