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首页> 外文期刊>The Journal of Chemical Physics >Entropic stochastic resonance without external force in oscillatory confined space
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Entropic stochastic resonance without external force in oscillatory confined space

机译:振动密闭空间中无外力的熵随机共振

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摘要

We have studied the dynamics of Brownian particles in a confined geometry of dumbbell-shape with periodically oscillating walls. Entropic stochastic resonance (ESR) behavior, characterizing by a maximum value of the coherent factor Q at some optimal level of noise, is observed even without external periodic force in the horizontal direction, which is necessary for conventional ESR where the wall is static and the particle is subjected to the force. Interestingly, the ESR can be remarkably enhanced by the particle gravity G, in contrast to the conventional case. In addition, Q decreases (increases) with G in the small (large) noise limit, respectively, while it non-monotonically changes with G for moderate noise levels. We have applied an effective 1D coarsening description to illustrate such a nontrivial dependence on G, by investigating the property of the 1D effective potential of entropic nature and paying special attention to the excess part resulting from the boundary oscillation. Dependences of the ESR strength with other related parameters are also discussed. (C) 2015 AIP Publishing LLC.
机译:我们研究了具有周期性振动壁的哑铃形受限几何结构中布朗粒子的动力学。即使在水平方向上没有外部周期性力的情况下,也可以观察到熵随机共振(ESR)行为,该行为以相干因子Q在某个最佳噪声水平下的最大值为特征,这对于传统的ESR是必需的,在常规的ESR中,壁是静态的,颗粒受到作用力。有趣的是,与传统情况相比,粒子重力G可以显着提高ESR。此外,在较小(较大)的噪声限制下,Q分别随G的降低(增加),而对于中等噪声水平,它随G的变化非单调变化。通过研究熵性质的一维有效电势的性质,并特别注意边界振荡产生的多余部分,我们已经应用了有效的一维粗化描述来说明这种对G的非平凡依赖。还讨论了ESR强度与其他相关参数的依赖关系。 (C)2015 AIP Publishing LLC。

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