光学晶格中rydberg修饰原子的少体模拟量子模拟

IF 9.3 Q1 PHYSICS, APPLIED
D. Malz, J. Cirac
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引用次数: 3

摘要

大多数在光学晶格中用超冷原子进行的实验都有接触相互作用,因此在每个位点大约一个原子的高密度下进行操作,以观察强相互作用的影响。通过里德伯格敷料可以产生强范围的相互作用,这为探索少数相互作用粒子的物理开辟了道路。光学晶格的位置现在可以被解释为离散空间,而不是晶体的晶胞。这允许在熟悉的体系结构中研究全新类型的问题。我们研究了实现类似于量子化学中发现的问题的可能性,尽管在相互作用中有不同的标度定律。通过数值模拟,我们证明了在最先进的实验中可以高保真地制备简单的伪原子和分子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Few-Body Analog Quantum Simulation with Rydberg-Dressed Atoms in Optical Lattices
Most experiments with ultracold atoms in optical lattices have contact interactions, and therefore operate at high densities of around one atom per site to observe the effect of strong interactions. Strong ranged interactions can be generated via Rydberg dressing, which opens the path to explore the physics of few interacting particles. Rather than the unit cells of a crystal, the sites of the optical lattice can now be interpreted as discretized space. This allows studying completely new types of problems in a familiar architecture. We investigate the possibility of realizing problems akin to those found in quantum chemistry, although with a different scaling law in the interactions. Through numerical simulation, we show that simple pseudo-atoms and -molecules could be prepared with high fidelity in state-of-the-art experiments.
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来源期刊
CiteScore
14.60
自引率
0.00%
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