Sabari S, Jisha Chandroth P, Porsezian K, Brazhnyi Valeriy A
Department of Physics, University of Pune, Pune 411007, Maharashtra, India.
Department of Physics, Pondicherry University, Puducherry 605014, Puducherry, India.
Phys Rev E Stat Nonlin Soft Matter Phys. 2015 Sep;92(3):032905. doi: 10.1103/PhysRevE.92.032905. Epub 2015 Sep 14.
We study the stabilization properties of dipolar Bose-Einstein condensate by temporal modulation of short-range two-body interaction. Through both analytical and numerical methods, we analyze the mean-field Gross-Pitaevskii equation with short-range two-body and long-range, nonlocal, dipolar interaction terms. We derive the equation of motion and effective potential of the dipolar condensate by variational method. We show that there is an enhancement of the condensate stability due to the inclusion of dipolar interaction in addition to the two-body contact interaction. We also show that the stability of the dipolar condensate increases in the presence of time varying two-body contact interaction; the temporal modification of the contact interaction prevents the collapse of dipolar Bose-Einstein condensate. Finally we confirm the semi-analytical prediction through the direct numerical simulations of the governing equation.
我们通过短程两体相互作用的时间调制来研究偶极玻色-爱因斯坦凝聚体的稳定特性。通过解析和数值方法,我们分析了包含短程两体以及长程、非局域偶极相互作用项的平均场格罗斯-皮塔耶夫斯基方程。我们通过变分法推导了偶极凝聚体的运动方程和有效势。我们表明,除了两体接触相互作用外,由于包含偶极相互作用,凝聚体的稳定性有所增强。我们还表明,在存在随时间变化的两体接触相互作用时,偶极凝聚体的稳定性会增加;接触相互作用的时间调制可防止偶极玻色-爱因斯坦凝聚体的坍缩。最后,我们通过对控制方程的直接数值模拟证实了半解析预测。