Equation of state of Bose gases beyond the universal regime

Marti Planasdemunt, Jordi Pera, Jordi Boronat
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Abstract

The equation of state of dilute Bose gases, in which the energy only depends on the $s$-wave scattering length, is rather unknown beyond the universal limit. We have carried out a bunch of diffusion Monte Carlo calculations up to gas parameters of $10^{-2}$ to explore how the departure from the universality emerges. Using different model potentials, we calculate the energies of the gas in an exact way, within some statistical noise, and report the results as a function of the three relevant scattering parameters: the $s$-wave scattering length $a_0$, the $s$-wave effective range $r_0$, and the $p$-wave scattering length $a_1$. If the effective range is not large we observe universality in terms of $a_0$ and $r_0$ up to gas parameters of $10^{-2}$. If $r_0$ grows the regime of universality in these two parameters is reduced and effects of $a_1$ start to be observed. In the $(a_0,r_0)$ universal regime we propose an analytical law that reproduces fairly well the exact energies.
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超越普适机制的玻色气体状态方程
稀薄玻色气体的状态方程中,能量只依赖于 $s$ 波的散射长度,而在普遍极限之外,这种状态方程是相当未知的。我们进行了一系列扩散蒙特卡洛计算,以探讨如何偏离普遍性,直至气体参数达到 $10^{-2}$。我们使用不同的模型电势,在一定的统计噪声范围内精确地计算了气体的能量,并将结果报告为三个相关散射参数的函数:$s$波散射长度$a_0$、$s$波有效范围$r_0$和$p$波散射长度$a_1$。如果有效范围不大,在气体参数为 10^{-2}$ 的情况下,我们可以观察到 $a_0$ 和 $r_0$ 之间的普遍性。如果 $r_0$ 增大,这两个参数的普遍性就会减弱,并开始观测到 $a_1$ 的影响。在$(a_0,r_0)$的普遍性条件下,我们提出了一个分析定律,它相当好地再现了精确的能量。
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