论文标题

一维莫特绝缘子的高谐波一代

High-harmonic generation in one-dimensional Mott insulator

论文作者

Murakami, Yuta, Takayoshi, Shintaro, Koga, Akihisa, Werner, Philipp

论文摘要

我们在一维Hubbard模型中研究高谐波产生(HHG),以了解其与基本激发以及与半导体的相似性和差异的关系。模拟基于无限的时间不断变化的块拆卸(ITEBD)方法和确切的对角度化。我们阐明HHG源自Doublon-Holon的重组,截止频率的缩放与对外场的线性依赖性一致。我们证明,可以通过Doublon-Holon对的现象学三步模型合理地描述HHG的亚周特征。我们认为,一维Mott绝缘子中的HHG与Doublon-Holon对的分散相对于其相对动量密切相关,这不一定是由于基本激发的多体性质所捕获的。为了与半导体进行比较,我们介绍了从Schrieffer-Wolff转换获得的有效模型,即强耦合膨胀,这使我们能够分散Hubbard模型中涉及的不同过程:双元和圆锥体的内部动力学,霍金元和霍因元素,频带偶极偶极型和旋转交换。这些证明了莫特系统与偶极仪中半导体模型的形式相似性,并揭示了不直接影响电荷动力学的自旋动力学可以降低HHG强度。我们还表明,内标偶极矩的远距离成分对HHG强度具有重大影响,而Doubleons和Holon的相关跳跃项基本上决定了HHG光谱的形状。还引入了一种评估ITEBD方法中单粒子光谱的新数值方法。

We study high-harmonic generation (HHG) in the one-dimensional Hubbard model in order to understand its relation to elementary excitations as well as the similarities and differences to semiconductors. The simulations are based on the infinite time-evolving block decimation (iTEBD) method and exact diagonalization. We clarify that the HHG originates from the doublon-holon recombination, and the scaling of the cutoff frequency is consistent with a linear dependence on the external field. We demonstrate that the subcycle features of the HHG can be reasonably described by a phenomenological three step model for a doublon-holon pair. We argue that the HHG in the one-dimensional Mott insulator is closely related to the dispersion of the doublon-holon pair with respect to its relative momentum, which is not necessarily captured by the single-particle spectrum due to the many-body nature of the elementary excitations. For the comparison to semiconductors, we introduce effective models obtained from the Schrieffer-Wolff transformation, i.e. a strong-coupling expansion, which allows us to disentangle the different processes involved in the Hubbard model: intraband dynamics of doublons and holons, interband dipole excitations, and spin exchanges. These demonstrate the formal similarity of the Mott system to the semiconductor models in the dipole gauge, and reveal that the spin dynamics, which does not directly affect the charge dynamics, can reduce the HHG intensity. We also show that the long-range component of the intraband dipole moment has a substantial effect on the HHG intensity, while the correlated hopping terms for the doublons and holons essentially determine the shape of the HHG spectrum. A new numerical method to evaluate single-particle spectra within the iTEBD method is also introduced.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源