スペクトル政策:安定性そのものが公共財であるときの最適気候戦略
Spectral Policy: Optimal Climate Strategies When Stability Itself Is a Public Good (原題)
Doug Doucette
🤖 gxceed AI 要約
日本語
気候システムの構造的安定性を公共財として扱い、排出削減ではなく「安定性ギャップ」の管理を目的とする政策設計枠組みを提示する。炭素価格はホテリング規則にスペクトル補正を加えるべきで、逆U字型の炭素税経路や価格回廊、前倒しのR&D補助が導かれる。国際的には適応的目標調整や国境調整が必要となり、不確実性下では頑健政策がより保守的になる。数値計算では安定性崩壊確率を3分の1に低減しつつ、厚生費用はGDPの約1.6%とされる。
English
This paper reframes climate policy around managing the climate system's structural stability, treating a 'resonance gap' as a depreciating public good. It derives a spectral correction to the Hotelling rule, inverse-U carbon tax paths, price corridors for cap-and-trade, front-loaded R&D subsidies, and adaptive international agreements with gap-sensitive border adjustments. Simulations suggest a threefold reduction in collapse probability at a welfare cost of about 1.6% of GDP.
Unofficial AI-generated summary based on the public title and abstract. Not an official translation.
📝 gxceed 編集解説 — Why this matters
日本のGX文脈において
日本ではGX推進法や炭素価格制度(GXリーグ、排出量取引)の設計議論が進むが、本稿は安定性制約を価格経路や国際調整に組み込む理論枠組みを提供する。ただしSSBJ開示や有報対応への直接的な示唆は乏しく、政策立案者向けの参考資料としての位置づけが中心となる。
In the global GX context
The paper contributes to the theoretical frontier of carbon pricing by embedding climate-system stability constraints into optimal tax paths, price corridors, and border adjustments. It speaks to global debates on CBAM design and adaptive climate agreements, though it remains distant from TCFD/ISSB disclosure practice and transition-finance implementation.
👥 読者別の含意
🔬研究者:気候政策を動的制御問題として定式化し、安定性制約が炭素価格・R&D・国際協定に与える理論的含意を検討する材料になる。
🏢実務担当者:炭素価格の長期経路や国境調整の不確実性を踏まえたシナリオ分析の参考になるが、直接的な開示・調達実務への示唆は限定的。
🏛政策担当者:炭素税・排出量取引・国境調整の設計に安定性制約を組み込む理論的選択肢として、長期的な政策経路の検討に資する。
📄 Abstract(原文)
This paper introduces a framework for climate policy design that shifts the focus from simply reducing emissions to actively managing the climate system's structural stability. The central argument is that the climate's resonance gap—a measure of its spectral coherence—functions as a public good that depreciates with emissions, and policy must be designed to keep this gap above a critical threshold to prevent catastrophic regime shifts. The framework formulates optimal policy as a constrained control problem, minimizing social costs while maintaining spectral stability. This yields several important insights. First, carbon prices should follow a spectral correction to the Hotelling rule: when the stability gap is shrinking, prices must rise faster than the standard economic rule would suggest. Second, optimal carbon taxes can follow an inverse-U-shaped path—rising slowly or declining initially, then accelerating as the gap narrows. Third, R&D subsidies should be front-loaded when the gap is large, as early technological investment provides the greatest returns. For cap-and-trade systems, a price corridor emerges naturally from the stability constraint. The paper extends the framework internationally, showing that self-enforcing climate agreements require adaptive mechanisms that adjust national targets based on the global stability gap. Carbon border adjustments should account for gap differentials between trading partners. Under deep uncertainty about future gap dynamics, the robust policy is more conservative than certainty-equivalent approaches. The framework also addresses equity concerns, noting that the spectral premium may disproportionately affect low-income households, requiring revenue recycling or targeted transfers. Numerical simulations show that spectral policy reduces the probability of stability collapse by a factor of three compared to business-as-usual, at a welfare cost of approximately 1.6% of GDP.
🔗 Provenance — このレコードを発見したソース
- openalex https://doi.org/10.13140/rg.2.2.10020.85127first seen 2026-09-19 04:57:58
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