论文标题

调整简单玻色系统的量子性:通用相图

Tuning the quantumness of simple Bose systems: A universal phase diagram

论文作者

Kora, Youssef, Boninsegni, Massimo, Son, Dam Thanh, Zhang, Shiwei

论文摘要

我们介绍了许多与所谓的Lennard-Jones形式相互作用的许多Bose颗粒系统的相位图的综合理论研究。进行了第一原则的路径综合计算,从而在热力学特性上基本上提供了精确的数值结果。此处使用的理论模型提供了一个现实且极为通用的框架,用于描述从晶体到正常流体再到超流体和气体的简单玻璃系统。一方面,粒子相互作用之间的相互作用,另一方面的量子不可区分性和脱域的相互作用的特征在于单个量子性参数,可以调整为工程师并探索不同的机制。利用多体哈密顿量的多功能性和精确计算的可能性的罕见组合,我们系统地研究系统的相位是压力(P)和温度(T)的函数,以及量子性参数。我们展示了相图的拓扑结构如何从已知的HE-4情况下演变,因为该系统的制造量更高(且更少),并将我们的预测与平均场理论的可用结果进行比较。在各种实验系统(包括假设的Muonic物质)中讨论了此处预测的阶段和物理状态的可能实现和观察。

We present a comprehensive theoretical study of the phase diagram of a system of many Bose particles interacting with a two-body central potential of the so-called Lennard-Jones form. First-principles path-integral computations are carried out, providing essentially exact numerical results on the thermodynamic properties. The theoretical model used here provides a realistic and remarkably general framework for describing simple Bose systems ranging from crystals to normal fluids to superfluids and gases. The interplay between particle interactions on the one hand, quantum indistinguishability and delocalization on the other, is characterized by a single quantumness parameter, which can be tuned to engineer and explore different regimes. Taking advantage of the rare combination of the versatility of the many-body Hamiltonian and the possibility for exact computations, we systematically investigate the phases of the systems as a function of pressure (P) and temperature (T), as well as the quantumness parameter. We show how the topology of the phase diagram evolves from the known case of He-4, as the system is made more (and less) quantum, and compare our predictions with available results from mean-field theory. Possible realization and observation of the phases and physical regimes predicted here are discussed in various experimental systems, including hypothetical muonic matter.

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