论文标题

旋转,充电和$η$ -Spin分离,一维照相莫特绝缘子

Spin, charge and $η$-spin separation in one-dimensional photo-doped Mott insulators

论文作者

Murakami, Yuta, Takayoshi, Shintaro, Kaneko, Tatsuya, Läuchli, Andreas M., Werner, Philipp

论文摘要

我们表明,在扩展哈伯德模型中描述的一维光掺杂的莫特绝缘子中有效的冷亚稳态状态展示了旋转,电荷和$η$ -Spin分离。也就是说,它们的波在大型现场库仑相互作用极限中的功能可以表示为$ |ψ\ rangle = |ψ_{\ rm carde} \ rangle | rangle |ψ_ {\ rm spin} \ rm spin} \ rangle | rangle |ψ_{\rmη-spin}均衡中的哈伯德模型。这里$η$ -spin代表照片生成的伪系(Doubleon或Holon)的类型。 $ |ψ_ {\ rm Charge} \ rangle $由无旋转免费费米斯确定,$ |ψ_{\ rm spin} \ rangle $ by同型Heisenberg模型在挤压的旋转空间中的模型,以及$ | | | | {\ rmη-η-η-s-s-h $ rang \ range \ rangz; 空间。特别是,亚稳态的$η$水位和电荷密度波(CDW)状态对应于XXZ模型的无间隙和间隙状态。波函数的特定形式使我们能够准确确定相关函数的指数。该表格还表明,$η$ pairing状态的中央电荷为3,CDW阶段的中心电荷为2,我们在数值上确认。我们的研究提供了分析性和直观的见解,以实现相关系统中的主动自由度之间的相关性。

We show that effectively cold metastable states in one-dimensional photo-doped Mott insulators described by the extended Hubbard model exhibit spin, charge and $η$-spin separation. Namely, their wave functions in the large on-site Coulomb interaction limit can be expressed as $|Ψ\rangle =|Ψ_{\rm charge}\rangle|Ψ_{\rm spin}\rangle |Ψ_{\rm η-spin}\rangle$, which is analogous to the Ogata-Shiba states of the doped Hubbard model in equilibrium. Here $η$-spin represents the type of the photo-generated pseudeparticles (doublon or holon). $|Ψ_{\rm charge}\rangle$ is determined by spinless free fermions, $|Ψ_{\rm spin}\rangle$ by the isotropic Heisenberg model in the squeezed spin space, and $|Ψ_{\rm η-spin}\rangle$ by the XXZ model in the squeezed $η$-spin space. In particular, the metastable $η$-pairing and charge-density-wave (CDW) states correspond to the gapless and gapful states of the XXZ model. The specific form of the wave function allows us to accurately determine the exponents of correlation functions. The form also suggests that the central charge of the $η$-pairing state is 3 and that of the CDW phase is 2, which we numerically confirm. Our study provides analytic and intuitive insights into the correlations between active degrees of freedom in photo-doped strongly correlated systems.

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