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Lattice-model parameters for ultracold nonreactive molecules: Chaotic scattering and its limitations

机译:超蚀刻不反应分子的格子模型参数:混沌散射及其限制

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We calculate the parameters of the recently derived many-channel Hubbard model that is predicted to describe ultracold nonreactive molecules in an optical lattice, going beyond the approximations used by Do?aj et al. [A. Do?aj et al., Phys. Rev. Lett. 116, 135301 (2016)]. Although those approximations are expected to capture the qualitative structure of the model parameters, finer details and quantitative values are less certain. To set expectations for experiments, whose results depend on the model parameters, we describe the approximations’ regime of validity and the likelihood that experiments will be in this regime, discuss the impact that the failure of these approximations would have on the predicted model, and develop theories going beyond these approximations. Not only is it necessary to know the model parameters in order to describe experiments, but the connection that we elucidate between these parameters and the underlying assumptions that are used to derive them will allow molecule experiments to probe new physics. For example, transition state theory, which is used across chemistry and chemical physics, plays a key role in our determination of lattice parameters, thus connecting its physical assumptions to highly accurate experimental investigation.
机译:我们计算最近派生的许多通道船体模型的参数,预测要描述光学晶格中的超自然非反应分子,超出DOΔAJ等人使用的近似。 [一种。做吗?AJ等人。,phy。 rev. lett。 116,135301(2016)]。尽管预期这些近似捕获模型参数的定性结构,但更细的细节和定量值较少。为了确定实验的期望,其结果依赖于模型参数,我们描述了近似的有效性的政权以及实验将在这一制度中的可能性,讨论这些近似值的失败对预测模型的影响以及制定超出这些近似的理论。不仅有必要知道模型参数以便描述实验,但是我们在这些参数和用于导出它们的基础假设之间阐明的连接将允许分子实验探测新物理学。例如,在化学和化学物理学中使用的过渡状态理论在我们对晶格参数的测定中起着关键作用,从而将其物理假设连接到高度准确的实验研究。

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