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Control of reaction rate by asymmetric two-state noise

机译:通过非对称二态噪声控制反应速率

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摘要

We revisit the far from equilibrium escape problem across a fluctuating potential barrier that is driven by asymmetric, unbiased dichotomous noise. Our closed analytical solution for arbitrary noise strengths reveals new aspects of the so-called "resonant-activation" effect and leads to interesting implications regarding far from equilibrium or externally controlled chemical reaction processes. Specifically, a genuine asymmetry-induced variant of resonant activation within the constant intensity scaling scheme is discovered, and a new possibility to manipulate reaction rates and yields, as well as the balance between reactants and products, is put forward.
机译:我们重新审视了由不对称,无偏二分噪声驱动的波动势垒的远非均衡逃逸问题。我们针对任意噪声强度的封闭分析解决方案揭示了所谓的“共振激活”效应的新方面,并带来了远非平衡或外部控制的化学反应过程的有趣含义。具体地,发现了在恒定强度缩放方案内的真正不对称引起的共振活化变体,并提出了控制反应速率和产率以及反应物和产物之间平衡的新可能性。

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