Matrix product state classification of 1D multipole symmetry protected topological phases
ORAL
Abstract
Spatially modulated symmetries are one of the new types of symmetries whose symmetry actions are position dependent. Yet exotic phases resulting from these spatially modulated symmetries are not fully understood and classified. In this work, we systematically classify one dimensional bosonic symmetry protected topological phases protected respecting multipole symmetries by employing matrix product state formalism. The symmetry action induces projective representations at the ends of an open chain, which we identify via group cohomology. In particular, for r-pole symmetries, for instance, r = 0 (global), 1 (dipole), and 2 (quadrupole), the classification is determined by distinct components of second cohomology groups that encode the boundary projective representations.
*JST CREST JPMJCR19T2, JST CREST (Grant Number JPMJCR24I3), Villum Fonden Grant no. VIL60714, the Deutsche Forschungsgemeinschaft (DFG, German Research Foundation) under Germany's Excellence Strategy—Cluster of Excellence Matter and Light for Quantum Computing (ML4Q) EXC 2004/1 – 390534769 as well as within the CRC network TR 183 (Project Grant No. 277101999) as part of subproject B01.
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Publication: T. Saito, W. Cao, B. Han, H. Ebisu, Phys. Rev. B (under review); arXiv:2509.09244 [cond-mat.str-el]
Presenters
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Takuma Saito
- Yukawa Institute for Theoretical Physics