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Quantized Axial Charge of Staggered Fermions and the Chiral Anomaly

PHYSICAL REVIEW LETTERS(2025)

MIT

Cited 0|Views6
Abstract
In the 1+1D ultralocal lattice Hamiltonian for staggered fermions with a finite-dimensional Hilbert space, there are two conserved, integer-valued charges that flow in the continuum limit to the vector and axial charges of a massless Dirac fermion with a perturbative anomaly. Each of the two lattice charges generates an ordinary U(1) global symmetry that acts locally on operators and can be gauged individually. Interestingly, they do not commute on a finite lattice and generate the Onsager algebra, but their commutator goes to zero in the continuum limit. The chiral anomaly is matched by this non-Abelian algebra, which is consistent with the Nielsen-Ninomiya theorem. We further prove that the presence of these two conserved lattice charges forces the low-energy phase to be gapless, reminiscent of the consequence from perturbative anomalies of continuous global symmetries in continuum field theory. Upon bosonization, these two charges lead to two exact U(1) symmetries in the XX model that flow to the momentum and winding symmetries in the free boson conformal field theory.
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要点】:本文研究了1+1维超局部格点上的交错费米子的量化轴向电荷及其与手性异常的关系,揭示了在连续极限下的非阿贝尔代数匹配手性异常,证明了低能相必然是无隙的。

方法】:通过分析交错费米子在有限维希尔伯特空间的1+1维超局部格点哈密顿量,研究了守恒的整数电荷在连续极限下的行为,并运用玻色化方法将结果与XX模型的精确U(1)对称性联系起来。

实验】:本文未提供具体实验描述,但通过理论分析,证明了两个守恒格点电荷导致XX模型中存在两个精确的U(1)对称性,并在自由玻色子共形场论中流变为动量对称性和绕转对称性。未提及具体的数据集名称。