连续的门控第一通道流程。

Yuval Scher, Aanjaneya Kumar, M S Santhanam, Shlomi Reuveni
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引用次数: 0

摘要

门控第一通过过程的完成取决于撞击目标和满足其他约束条件,这种过程在各个领域都很普遍。尽管其重要性不言而喻,但基本问题的分析解决方案仍是未知数,例如扩散粒子被门控区间、圆盘或球体检测到的时间。在本文中,我们阐明了连续门控首次通过过程所带来的挑战,并提出了克服这些挑战的更新框架。该框架为包括单点、半线和区间目标在内的各种问题提供了统一的方法。迄今为止,后者一直无法精确求解。我们的分析表明,门控问题的解决方案可以直接从非门控动力学中获得。这反过来又揭示了普遍特性和渐近行为,揭示了隐秘的中间时态,并重新定义了连续空间门控过程的高隐秘性概念。此外,我们还将我们的形式主义扩展到了更高的维度,展示了它的多功能性和适用性。总之,这项工作为连续门控第一通道过程的动力学提供了宝贵的见解,并为在不同领域研究它们提供了分析工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Continuous gated first-passage processes.

Gated first-passage processes, where completion depends on both hitting a target and satisfying additional constraints, are prevalent across various fields. Despite their significance, analytical solutions to basic problems remain unknown, e.g. the detection time of a diffusing particle by a gated interval, disk, or sphere. In this paper, we elucidate the challenges posed by continuous gated first-passage processes and present a renewal framework to overcome them. This framework offers a unified approach for a wide range of problems, including those with single-point, half-line, and interval targets. The latter have so far evaded exact solutions. Our analysis reveals that solutions to gated problems can be obtained directly from the ungated dynamics. This, in turn, reveals universal properties and asymptotic behaviors, shedding light on cryptic intermediate-time regimes and refining the notion of high-crypticity for continuous-space gated processes. Moreover, we extend our formalism to higher dimensions, showcasing its versatility and applicability. Overall, this work provides valuable insights into the dynamics of continuous gated first-passage processes and offers analytical tools for studying them across diverse domains.

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