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Dynamics of equilibration and collisions in ultradilute quantum droplets
被引:12
|作者:
Cikojevic, V
[1
,2
]
Markic, L. Vranjes
[1
]
Pi, M.
[3
,4
]
Barranco, M.
[3
,4
]
Ancilotto, F.
[5
,6
,7
]
Boronat, J.
[2
]
机构:
[1] Univ Split, Fac Sci, Rudera Boskovica 33, HR-21000 Split, Croatia
[2] Univ Politecn Cataluna, Dept Fis, Campus Nord B4-B5, E-08034 Barcelona, Spain
[3] Univ Barcelona, Fac Fis, Dept FQA, Diagonal 645, Barcelona 08028, Spain
[4] Univ Barcelona, Inst Nanosci & Nanotechnol IN2UB, Barcelona 08028, Spain
[5] Univ Padua, Dipartimento Fis & Astron Galileo Galilei, Via Marzolo 8, I-35122 Padua, Italy
[6] Univ Padua, CNISM, Via Marzolo 8, I-35122 Padua, Italy
[7] CNR IOM Democritos, Via Bonomea 265, I-34136 Trieste, Italy
来源:
基金:
欧盟地平线“2020”;
关键词:
MANY-BODY PROBLEM;
COALESCENCE;
SEPARATION;
D O I:
10.1103/PhysRevResearch.3.043139
中图分类号:
O4 [物理学];
学科分类号:
0702 ;
摘要:
Employing time-dependent density-functional theory, we have studied dynamical equilibration and binary head-on collisions of quantum droplets taking as a case of study droplets made of a K-39 - K-39 Bose mixture. The phase space of collision outcomes is extensively explored by performing fully three-dimensional calculations with effective single-component Quantum Monte Carlo-based and two-component LHY-corrected mean-field functionals. We exhaustively explored the important effect-not considered in previous studies-of the initial population ratio deviating from the optimal mean-field value N-2/N-1 = root a(11)/a(22). Both stationary and dynamical calculations indicate sensitivity to an initial nonoptimal concentration. When three-body losses (3BL) are present our two-component approach allows to theoretically address situations in which they mainly act on one of the components of the mixture. Our approach also allows to simultaneously explore the effect on the simulation of population imbalance and 3BL, which are coupled when they act.
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页数:11
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