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Topological Quantum Criticality from Multiplicative Topological Phases.
R Flores-Calderón1,2, Elio J König3, Ashley M Cook1,2
1Max Planck Institute for the Physics of Complex Systems, Nöthnitzer Strasse 38, 01187 Dresden, Germany.
Multiplicative topological phases offer a new way to understand gapless symmetry-protected topological phases (SPTs). This research connects these phases, enabling concrete models for higher-dimensional, stable, gapless SPTs.
Area of Science:
- Condensed Matter Physics
- Topological Matter Physics
Background:
- Symmetry-protected topological phases (SPTs) with short-range entanglement are crucial in topological condensed matter physics.
- Understanding gapless SPTs is essential for their broader implications.
Purpose of the Study:
- To establish a fundamental connection between gapless SPTs and multiplicative topological phases.
- To demonstrate multiplicative topological phases as a general approach for realizing gapless SPT models.
Main Methods:
- Combining canonical topological insulator and semimetal models.
- Utilizing critical gapless models within symmetry-protected tensor product constructions.
Main Results:
- Identified a fundamental link between gapless SPTs and multiplicative topological phases.
- Demonstrated multiplicative topological phases as an intuitive and general method for realizing gapless SPT models.
- Showcased suitability for higher-dimensional, stable, and intrinsically gapless SPTs.
Conclusions:
- Multiplicative topological phases provide a powerful framework for studying gapless SPTs.
- This work opens new avenues for investigating topology through short-range entanglement.
- Facilitates broader and deeper investigations into topological phenomena.
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