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Irreversible evolution of a wave packet in the rigged-Hilbert-space quantum mechanics

机译:操纵 - 希尔伯特空间量子力学中波包的不可逆转演变

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It is well known that a state with complex energy cannot be the eigenstate of a self-adjoint operator, such as the Hamiltonian. Resonances, i.e., states with exponentially decaying observables, are not vectors belonging to the conventional Hilbert space. One can describe these resonances in an unusual mathematical formalism based on the so-called rigged Hilbert space (RHS). In the RHS, the states with complex energy are denoted as Gamow vectors (GVs), and they model decay processes. We study the GVs of the reversed harmonic oscillator, and we analytically and numerically investigate the unstable evolution of wave packets. We introduce the background function to study initial data that are not composed only by a summation of GVs, and we analyze different wave packets belonging to specific function spaces. Our work furnishes support for the idea that irreversible wave propagation can be investigated using rigged-Hilbert-space quantum mechanics and provides insight for the experimental investigation of irreversible dynamics.
机译:众所周知,与复杂的能量的状态下不能是自伴随操作员的本征态,如哈密顿。共振,即,具有指数衰减观测状态,不矢量属于常规Hilbert空间。人们可以在基于所谓的一个不寻常的数学形式描述这些共振操纵希尔伯特空间(RHS)。在RHS,具有复杂的能量状态被表示为盖莫夫载体(GVS),和它们模型衰变过程。我们研究了扭转谐振子的GVS,我们解析和数值研究波包的不稳定发展。我们介绍了背景功能研究不是由GVS的总和仅由初始数据,我们分析属于特定的功能空间中的不同波包。我们的工作配料的想法不可逆波的传播可以通过操纵 - 希尔伯特空间量子力学进行调查,并为不可逆的动力学实验研究提供了深入了解支持。

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