English

Spectroscopic fingerprints of gapless type-II fracton phases

Strongly Correlated Electrons 2022-06-10 v3 Quantum Physics

Abstract

Fracton phases feature elementary excitations with fractionalized mobility and are exciting interest from multiple areas of theoretical physics. However, the most exotic 'type-II' fracton phases, like the Haah codes, currently have no known experimental diagnostics. Here, we explain how type-II fracton phases with gapless gauge modes, such as the U(1)\mathrm{U}(1) Haah code, may be identified experimentally. Our analysis makes use of the 'multipole gauge theory' description of type-II fracton phases, which exhibits ultraviolet-infrared (UV-IR) mixing. We show that neutron scattering experiments on gapless type-II fracton phases should generically exhibit exotic pinch points in the structure factor, with distinctive anisotropic contours as a direct consequence of UV-IR mixing. This characteristic pinch point structure provides a clean diagnostic of type-II fracton phases. We also identify distinctive signatures of the (3+1)-D U(1)\mathrm{U}(1) Haah code in the low-temperature specific heat.

Keywords

Cite

@article{arxiv.2106.15631,
  title  = {Spectroscopic fingerprints of gapless type-II fracton phases},
  author = {Oliver Hart and Rahul Nandkishore},
  journal= {arXiv preprint arXiv:2106.15631},
  year   = {2022}
}

Comments

5+7 pages, 3+5 figures; v2 includes discussion of a classical spin model with parabolic pinch points; title change in v3