波希米亚力学几何动力学扩展的哈特曼效应

IF 3 3区 物理与天体物理 Q2 PHYSICS, MULTIDISCIPLINARY
Said Lantigua , Jonas Maziero
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引用次数: 0

摘要

本文发展了波西米亚力学的几何动力学扩展来描述量子隧穿势垒,将粒子轨迹视为阿尔库别雷型时空中的测地线。该模型提供了量子势、粒子动力学和隧穿时间的解析表达式,明确地与潜在的时空几何结构联系在一起。对于窄势垒,隧穿时间取决于势垒宽度,而对于足够宽的势垒,隧穿时间饱和到一个常数,恢复了哈特曼效应。这种行为源于一种几何自我调节机制,其中量子势动态调节时空扭曲以保持固定的隧穿时间,这与相对论因果关系一致,尽管有效的超光速传播。这些结果建立了量子隧穿和时空几何之间的直接联系,为解释哈特曼效应提供了一个统一的框架。这种方法自然地结合了相对论约束,同时表明类似的几何机制可能是其他量子现象的基础,例如凝聚态系统中的拓扑相。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hartman effect from a geometrodynamic extension of Bohmian mechanics
This paper develops a geometrodynamic extension of Bohmian mechanics to describe quantum tunneling through a potential barrier, treating particle trajectories as geodesics in an Alcubierre-type spacetime. The model provides analytical expressions for the quantum potential, particle dynamics, and tunneling time, explicitly linked to the underlying spacetime geometry. For narrow barriers, the tunneling time depends on the barrier width, while for sufficiently wide barriers, it saturates to a constant value—recovering the Hartman effect. This behavior arises from a geometric self-regulation mechanism, where the quantum potential dynamically adjusts the spacetime distortion to maintain a fixed tunneling time, consistent with relativistic causality despite effective superluminal propagation. The results establish a direct connection between quantum tunneling and spacetime geometry, offering a unified framework to interpret the Hartman effect. This approach naturally incorporates relativistic constraints while suggesting that similar geometric mechanisms may underlie other quantum phenomena, such as topological phases in condensed matter systems.
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来源期刊
Annals of Physics
Annals of Physics 物理-物理:综合
CiteScore
5.30
自引率
3.30%
发文量
211
审稿时长
47 days
期刊介绍: Annals of Physics presents original work in all areas of basic theoretic physics research. Ideas are developed and fully explored, and thorough treatment is given to first principles and ultimate applications. Annals of Physics emphasizes clarity and intelligibility in the articles it publishes, thus making them as accessible as possible. Readers familiar with recent developments in the field are provided with sufficient detail and background to follow the arguments and understand their significance. The Editors of the journal cover all fields of theoretical physics. Articles published in the journal are typically longer than 20 pages.
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