Breathing mode in two-dimensional binary self-bound Bose-gas droplets

Philipp Sturmer, M. N. Tengstrand, Rashi Sachdeva, Stephanie M. Reimann
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引用次数: 7

Abstract

In this work, we present the study of the stationary structures and the breathing mode behavior of a two-dimensional self-bound binary Bose droplet. We employ an analytical approach using a variational ansatz with a super-Gaussian trial order parameter and compare it with the numerical solutions of the extended Gross-Pitaevskii equation. We find that the super-Gaussian is superior to the often used Gaussian ansatz in describing the stationary and dynamical properties of the system. We find that for sufficiently large non-rotating droplets the breathing mode is energetically favourable compared to the self-evaporating process. For small self-bound systems our results differ based on the ansatz. Inducing angular momentum by imprinting multiply quantized vortices at the droplet center, this preference for the breathing mode persists independent of the norm.
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二维二元自束缚玻色液滴的呼吸模式
在这项工作中,我们研究了二维自束缚二元玻色液滴的固定结构和呼吸模式行为。我们采用了一种带有超高斯试序参数的变分分析方法,并将其与广义Gross-Pitaevskii方程的数值解进行了比较。我们发现超高斯在描述系统的稳态和动态特性方面优于常用的高斯方差。我们发现,对于足够大的非旋转液滴,与自蒸发过程相比,呼吸模式在能量上是有利的。对于小的自约束系统,我们的结果会根据分析结果而有所不同。通过在液滴中心压印多重量化涡流来诱导角动量,这种对呼吸模式的偏好与范数无关。
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