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Communication: Resonance reaction in diffusion-influenced bimolecular reactions

机译:交流:扩散影响的双分子反应中的共振反应

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摘要

We investigate the influence of a stochastically fluctuating step-barrier potential on bimolecular reaction rates by exact analytical theory and stochastic simulations. We demonstrate that the system exhibits a new "resonant reaction" behavior with rate enhancement if an appropriately defined fluctuation decay length is of the order of the system size. Importantly, we find that in the proximity of resonance, the standard reciprocal additivity law for diffusion and surface reaction rates is violated due to the dynamical coupling of multiple kinetic processes. Together, these findings may have important repercussions on the correct interpretation of various kinetic reaction problems in complex systems, as, e.g., in biomolecular association or catalysis. (C) 2016 AIP Publishing LLC.
机译:我们通过精确的分析理论和随机模拟研究了随机波动的势垒势对双分子反应速率的影响。我们证明,如果适当定义的波动衰减长度为系统大小的量级,则系统将显示出具有速率增强的新“共振反应”行为。重要的是,我们发现在共振附近,由于多个动力学过程的动力学耦合,违反了扩散和表面反应速率的标准可逆加性定律。总之,这些发现可能对正确解释复杂系统中各种动力学反应问题具有重要影响,例如在生物分子缔合或催化中。 (C)2016 AIP出版有限责任公司。

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