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首页> 外文期刊>Annalen der Physik >Time Asymmetric Quantum Mechanics and Shock Waves: Exploring the Irreversibility in Nonlinear Optics
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Time Asymmetric Quantum Mechanics and Shock Waves: Exploring the Irreversibility in Nonlinear Optics

机译:时间不对称量子力学和冲击波:探索非线性光学的不可逆转

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摘要

The description of irreversible phenomena is a still debated topic in quantum mechanics. Still nowadays, there is no clear procedure to distinguish the coupling with external baths from the intrinsic irreversibility in isolated systems. In 1928 Gamow introduced states with exponentially decaying observables not belonging to the conventional Hilbert space. These states are named Gamow vectors, and they belong to rigged Hilbert spaces. This review summarizes the contemporary approach using Gamow vectors and rigged Hilbert space formalism as foundations of a generalized time asymmetric quantum mechanics. We study the irreversible propagation of specific wave packets and show that the topic is surprisingly related to the problem of irreversibility of shock waves in classical nonlinear evolution. We specifically consider the applications in the field of nonlinear optics. We show that it is possible to emulate irreversible quantum mechanical process by the nonlinear evolution of a laser beam and we provide experimental tests by the generation of dispersive shock waves in highly nonlocal regimes. We demonstrate experimentally the quantization of decay rates predicted by the time-asymmetric quantum mechanics. This work furnishes support to the idea of intrinsically irreversible wave propagation, and to novel tests of the foundations of quantum mechanics.
机译:不可逆转现象的描述是量子力学仍讨论的话题。如今,目前仍然没有明确的过程可以将与外部浴外浴的联接区分离出隔离系统中的内在不可逆性。 1928年,Gamow引入了具有指数腐烂的可观察到不属于传统的希尔伯特空间的状态。这些状态被命名为Gamow Vectors,他们属于装配的Hilbert空间。本综述总结了使用Gamow Vectors的当代方法,并使希尔伯特空间形式主义作为广义时间不对称量子力学的基础。我们研究了特定波包的不可逆传播,并表明该话题令人惊讶地与古典非线性演化中冲击波的不可逆转性问题有关。我们特别考虑非线性光学领域的应用。我们表明,可以通过激光束的非线性演变来模拟不可逆量子机械过程,并且我们通过在高度非局部制度中产生分散冲击波提供实验测试。我们证明了通过不对称量子力学预测预测的衰变率的量化。这项工作提供了对本质上不可逆转波传播的思想,以及量子力学基础的新试验。

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