Green parafermions as emergent flat-band excitations in condensed matter
Huan-Qiang Zhou, Ian P. McCulloch, Murray T. Batchelor

TL;DR
This paper demonstrates that Green parafermions, previously considered mathematical curiosities, can emerge as flat-band excitations in condensed matter systems with spontaneous symmetry breaking and type-B Goldstone modes, revealing new quasiparticle possibilities.
Contribution
The study introduces a novel physical realization of Green parafermions as emergent excitations in condensed matter systems with specific symmetry-breaking features.
Findings
Green parafermions can be realized as composite excitations in certain condensed matter systems.
Emergent Green parafermions correspond to flat-band excitations with trilinear algebra.
Explicit models demonstrate the physical emergence of these parafermions.
Abstract
Green parafermions, originally introduced by Green and extended by Greenberg and Messiah through trilinear and relative trilinear commutation relations beyond Bose-Fermi statistics, are generally regarded as mathematical curiosities without physical realization. We show that these paraparticles can in fact emerge as composite excitations in a broad class of condensed-matter systems undergoing spontaneous symmetry breaking with type-B Goldstone modes. The key ingredient is the introduction of auxiliary Majorana fermions defined on emergent unit cells produced by partial translational-symmetry breaking. When the auxiliary Majoranas are treated as physical degrees of freedom, the resulting Green parafermion states (up to a projection operator) correspond to flat-band excitations, whose creation and annihilation operators satisfy the trilinear algebra. When they are regarded as fictitious,…
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Taxonomy
TopicsTopological Materials and Phenomena · Advanced Condensed Matter Physics · Quantum many-body systems
