Jason Peter, Johansson Magnus, Kirr Katarina
Department of Physics, Chemistry and Biology (IFM), Linköping University, SE-581 83 Linköping, Sweden.
Phys Rev E Stat Nonlin Soft Matter Phys. 2012 Jul;86(1 Pt 2):016214. doi: 10.1103/PhysRevE.86.016214. Epub 2012 Jul 17.
We study the Bose-Hubbard model for three sites in a symmetric, triangular configuration and search for quantum signatures of the classical regime of oscillatory instabilities, known to appear through Hamiltonian Hopf bifurcations for the "single-depleted-well" family of stationary states in the discrete nonlinear Schrödinger equation. In the regimes of classical stability, single quantum eigenstates with properties analogous to those of the classical stationary states can be identified already for rather small particle numbers. On the other hand, in the instability regime the interaction with other eigenstates through avoided crossings leads to strong mixing, and no single eigenstate with classical-like properties can be seen. We compare the quantum dynamics resulting from initial conditions taken as perturbed quantum eigenstates and SU(3) coherent states, respectively, in a quantum-semiclassical transitional regime of 10-100 particles. While the perturbed quantum eigenstates do not show a classical-like behavior in the instability regime, a coherent state behaves analogously to a perturbed classical stationary state, and exhibits initially resonant oscillations with oscillation frequencies well described by classical internal-mode oscillations.
我们研究了处于对称三角形构型的三个格点的玻色 - 哈伯德模型,并寻找经典振荡不稳定性区域的量子特征,已知这种不稳定性会通过离散非线性薛定谔方程中“单耗尽阱”族稳态的哈密顿霍普夫分岔出现。在经典稳定区域,对于相当少的粒子数,就可以识别出具有与经典稳态类似性质的单个量子本征态。另一方面,在不稳定区域,通过避免交叉与其他本征态的相互作用会导致强烈混合,并且看不到具有类经典性质的单个本征态。我们比较了在10 - 100个粒子的量子 - 半经典过渡区域中,分别以受扰量子本征态和SU(3)相干态作为初始条件所产生的量子动力学。虽然受扰量子本征态在不稳定区域不表现出类经典行为,但相干态的行为类似于受扰经典稳态,并表现出初始共振振荡,其振荡频率可以用经典内模振荡很好地描述。