论文标题
部分可观测时空混沌系统的无模型预测
Out of equilibrium many-body expansion dynamics of strongly interacting bosons
论文作者
论文摘要
我们从第一原理中求解了schrödinger方程,以研究从谐波陷阱释放的一维镇压相互作用的玻色子的扩展动力学中的多体效应。我们利用玻色子(MCTDHB)的多配制时间依赖性的Hartree方法来求解高准确性的多体Schrödinger方程。 MCTDHB基集明确取决于时间依赖,并通过变异原理进行了优化。我们通过三个关键措施探测扩展动力。一体,两体密度的时间演变。我们观察到平均场理论何时会导致单峰膨胀,多体计算表现出三峰膨胀动力学。多体的特征是最初碎片的玻色子如何随时间独立传播,而平均场景则图片会膨胀整个云。我们还提出了整个内核,外核和云的三个不同时间尺度。我们分析了扩展过程中动态碎片的关键作用。在两体密度和三体密度的动力学中,表现出相关孔和明显的离域效应的动力学,证明了多体效应的有力证据。
We solve the Schrödinger equation from first principles to investigate the many-body effects in the expansion dynamics of one-dimensional repulsively interacting bosons released from a harmonic trap. We utilize the multiconfigurational time-dependent Hartree method for bosons (MCTDHB) to solve the many-body Schrödinger equation at high level of accuracy. The MCTDHB basis sets are explicitly time-dependent and optimised by variational principle. We probe the expansion dynamics by three key measures; time evolution of one-, two- and three-body densities. We observe when the mean-field theory results to unimodal expansion, the many-body calculation exhibits trimodal expansion dynamics. The many-body features how the initially fragmented bosons independently spreads out with time whereas the mean-field pictures the expansion of the whole cloud. We also present the three different time scale of dynamics of the inner core, outer core and the cloud as a whole. We analyze the key role played by the dynamical fragmentation during expansion. A Strong evidence of the many-body effects is presented in the dynamics of two- and three-body densities which exhibit correlation hole and pronounced delocalization effect.