English

The halon: a quasiparticle featuring critical charge fractionalization

Quantum Gases 2019-01-02 v2 Quantum Physics

Abstract

The halon is a special critical state of an impurity in a quantum-critical environment. The hallmark of the halon physics is that a well-defined integer charge gets fractionalized into two parts: a microscopic core with half-integer charge and a critically large halo carrying a complementary charge of ±1/2\pm 1/2. The halon phenomenon emerges when the impurity--environment interaction is fine-tuned to the vicinity of a boundary quantum critical point (BQCP), at which the energies of two quasiparticle states with adjacent integer charges approach each other. The universality class of such BQCP is captured by a model of pseudo-spin-1/21/2 impurity coupled to the quantum-critical environment, in such a way that the rotational symmetry in the pseudo-spin xyxy-plane is respected, with a small local "magnetic" field along the pseudo-spin zz-axis playing the role of control parameter driving the system away from the BQCP. On the approach to BQCP, the half-integer projection of the pseudo-spin on its zz-axis gets delocalized into a halo of critically divergent radius, capturing the essence of the phenomenon of charge fractionalization. With large-scale Monte Carlo simulations, we confirm the existence of halons---and quantify their universal features---in O(2) and O(3) quantum critical systems.

Keywords

Cite

@article{arxiv.1807.02168,
  title  = {The halon: a quasiparticle featuring critical charge fractionalization},
  author = {Kun Chen and Yuan Huang and Youjin Deng and Boris Svistunov},
  journal= {arXiv preprint arXiv:1807.02168},
  year   = {2019}
}

Comments

18 pages, 13 figures

R2 v1 2026-06-23T02:52:20.924Z