无限随机性的关键性和浮动阶段的定位在被不完美的 Tweezers 困住的 Rydberg 原子阵列中
Jose Soto-Garcia1, Natalia Chepiga1
1Delft University of Technology, Kavli Institute of Nanoscience, Lorentzweg 1, 2628 CJ Delft, The Netherlands.
Physical review letters
|February 22, 2026
概括
在量子模拟器中使用的里德伯格原子链,面临着混乱的挑战. 这项研究表明,障碍改变了量子相位过渡和局部化相位,影响了对关键现象的理解.
科学领域:
- 量子物理学的量子物理学
- 原子物理 原子物理
- 凝聚物质物理学 凝聚物质物理学
背景情况:
- 里德伯格原子链为低维量子物理学提供了精确的控制.
- 光学子使合成量子相成为可能,但由于宽度有限而引入混乱.
- 原子间距离的失调会影响量子相位过渡.
研究的目的:
- 为了数值地研究灭无序对里德伯格原子链中的关键体制的影响.
- 分析混乱如何影响基布尔-祖雷克动态和浮动阶段.
主要方法:
- 一维Rydberg原子数组的数值模拟.
- 在不同强度的疾病下分析基布尔-祖雷克动态.
- 研究漂浮阶段 (不相称的拉丁格尔液体) 的行为.
主要成果:
- 混乱导致从Ising过渡到无限随机固定点的交叉,随着系统大小和混乱的增加.
- 浮动阶段由混乱局部化.
- 短期不相称的相关性在局部浮动阶段仍然存在.
结论:
- 灭的混乱显著改变了里德伯格原子量子模拟器中的关键现象.
- 了解疾病效应对于解释实验结果和推进量子模拟至关重要.
- 赖德伯格原子平台在研究由于固有的混乱而导致的关键现象方面存在概念性挑战.
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