屏蔽电缆
退化(生物学)
微波食品加热
望远镜
蒸发
分子
物理
材料科学
凝聚态物理
量子力学
计算机科学
热力学
电信
生物
生物信息学
作者
Reuben R. W. Wang,Shrestha Biswas,Sebastian Eppelt,Fulin Deng,Xinyu Luo,John L. Bohn
出处
期刊:Physical review
[American Physical Society]
日期:2024-10-10
卷期号:110 (4)
标识
DOI:10.1103/physreva.110.043309
摘要
In the quest toward realizing novel quantum matter in ultracold molecular gases, we perform a numerical study of evaporative cooling in ultracold gases of microwave-shielded polar fermionic molecules. Our Monte Carlo simulations incorporate accurate two-body elastic and inelastic scattering cross sections, realistic modeling of the optical dipole trap, and the influence of Pauli blocking at low temperatures. The simulations are benchmarked against data from evaporation studies performed with ultracold NaK molecules, showing excellent agreement. We further explore the prospects for optimizing the evaporation efficiency by varying the ramp rate and duration of the evaporation trajectory. Our simulation shows that it is possible to reach $<10%$ of the Fermi temperature under optimal conditions even in the presence of two-body molecular losses.
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