论文标题

经典的谐波三体系统:实验电子实现

Classical harmonic three-body system: An experimental electronic realization

论文作者

Escobar-Ruiz, A. M., Quiroz-Juarez, M. A., Del Rio-Correa, J. L., Aquino, N.

论文摘要

$ \ Mathbb {r}^d $($ d> 1 $)中的经典三体谐波系统具有有限的休息长度和零总角动量$ l = 0 $。该模型描述了$ l = 0 $近平衡配置的三个点质量$(m_1,m_2,m_3)$的动力学,具有任意成对电势$ v(r_ {ij})$,仅取决于身体之间的相对距离。它表现出有趣的混合常规和混沌动力学,这是能量和系统参数的函数。相应的谐波量子系统在原子和分子物理学中起着基本作用。在这项工作中,我们报告了该模型的新型电子实验实现,作为分析经典系统丰富动态的补充工具。由于系统参数和初始条件是通过电压信号独立控制的,因此我们的设置使我们能够实验探索不同行为区域。混乱和周期性的动作是使用时间序列,相位平面以及最大的Lyapunov指数作为能量和系统参数的函数的。结果表明,理论与实验之间存在出色的定性和定量一致性。

The classical three-body harmonic system in $\mathbb{R}^d$ ($d>1$) with finite rest lengths and zero total angular momentum $L=0$ is considered. This model describes the dynamics of the $L=0$ near-equilibrium configurations of three point masses $(m_1,m_2,m_3)$ with arbitrary pairwise potential $V(r_{ij})$ that solely depends on the relative distances between bodies. It exhibits an interesting mixed regular and chaotic dynamics as a function of the energy and the system parameters. The corresponding harmonic quantum system plays a fundamental role in atomic and molecular physics. In this work we report on a novel electronic experimental realization of the model as a complementary tool to analyze the rich dynamics of the classical system. Our setup allows us to experimentally explore different regions of behavior due to the fact that the system parameters and initial conditions are independently controlled via voltage signals. Chaotic and periodic motions are characterized employing time series, phase planes, and the largest Lyapunov exponents as a function of the energy and system parameters. The results show an excellent qualitative as well as quantitative agreement between theory and experiment.

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