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首页> 外文期刊>Laser Physics: An International Journal devoted to Theoretical and Experimental Laser Research and Application >Parametric resonance phenomena in Bose-Einstein condensates: Enhanced quantum tunneling of coherent matter pulses
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Parametric resonance phenomena in Bose-Einstein condensates: Enhanced quantum tunneling of coherent matter pulses

机译:Bose-Einstein凝聚物中的参数共振现象:相干物质脉冲的增强量子隧穿

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摘要

We investigate the quantum tunneling of a Bose-Einstein condensate confined in an optical trap. We show that periodic pulses of coherent matter are emitted from the trap by using an oscillating energy barrier. Moreover, the emitted fraction of condensed atoms strongly increases if the period of oscillation of the height of the energy barrier is in parametric resonance with the period of oscillation of the center of mass of the condensate inside the potential well. Our model is analyzed by numerically solving the nonpolynomial Schrodinger equation (NPSE), an effective one-dimensional equation which describes the macroscopic wave function of Bose condensates under transverse harmonic confinement. The range of validity of the NPSE is discussed and compared with that of the Gross-Pitaevskii equation. [References: 20]
机译:我们研究限制在光阱中的玻色-爱因斯坦凝聚物的量子隧穿。我们展示了通过使用振荡能垒从陷阱中发射出相干物质的周期性脉冲。此外,如果势垒高度的振荡周期与势阱内的冷凝物的质心的振荡周期处于参数共振,则冷凝原子的发射分数会大大增加。通过数值求解非多项式Schrodinger方程(NPSE)来分析我们的模型,该方程是一个有效的一维方程,它描述了横向谐波约束下玻色凝析油的宏观波函数。讨论了NPSE的有效性范围,并将其与Gross-Pitaevskii方程的有效性范围进行了比较。 [参考:20]

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