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Spectroscopy of dipolar fermions in layered two-dimensional and three-dimensional latticesud

机译:二维和三维层状偶极子费米光谱 ud

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摘要

Motivated by ongoing measurements at JILA, we calculate the recoil-free spectra of dipolar interacting fermions, for example ultracold heteronuclear molecules, in a one-dimensional lattice of two-dimensional layers or "pancakes," spectroscopically probing transitions between different internal (e.g., rotational) states. We additionally incorporate p-wave interactions and losses, which are important for reactive molecules such as KRb. Moreover, we consider other sources of spectral broadening: interaction-induced quasiparticle lifetimes and the different polarizabilities of the rotational states used for the spectroscopy. Although our main focus is molecules, some of the calculations are also useful for optical lattice atomic clocks. For example, understanding the p-wave shifts between identical fermions and small dipolar interactions coming from the excited clock state is necessary to reach future precision goals. Finally, we consider the spectra in a deep three-dimensional lattice and show how they give a great deal of information about static correlation functions, including all the moments of the density correlations between nearby sites. The range of correlations measurable depends on spectroscopic resolution and the dipole moment.
机译:根据JILA不断进行的测量,我们计算了二维层或“薄煎饼”的一维晶格中偶极相互作用的费米子(例如超冷异核分子)的无后坐力光谱,以光谱法探测了不同内部(例如,旋转)状态。我们还考虑了p波相互作用和损耗,这对于反应性分子(例如KRb)很重要。此外,我们考虑了光谱展宽的其他来源:相互作用引起的准粒子寿命以及用于光谱学的旋转态的不同极化率。尽管我们的主要重点是分子,但是某些计算对于光学晶格原子钟也很有用。例如,为了达到未来的精度目标,必须了解在相同的费米子和来自激发时钟状态的小偶极子相互作用之间的p波移位。最后,我们考虑了深层三维晶格中的光谱,并展示了它们如何提供大量有关静态相关函数的信息,包括附近站点之间密度相关的所有时刻。可测量的相关范围取决于光谱分辨率和偶极矩。

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