Evidence of hyperdimensional topological defects in a ferroelectric supercrystal phase-transition
arXiv:2104.06791
Abstract
We perform real-time stereoscopic wide-area imaging of a ferroelectric phase-transition in KTN:Li. Spontaneous polarization is observed to form a thermally hysteretic 3D lattice of mutually interlinked closed-flux patterns that spans the entire sample. Results are compatible with a supercrystal of topological texture defects arising as the three-fold spatial and one-fold time-inversion symmetries are simultaneously broken. Each lattice site of the texture supercrystal emerges as the projection in actual space of an S hypersphere, an extended volume Hopf-link fabric able to screen both volume charge and ferroelectric strain.
References in corpus (4)
- Skyrmion fractionalization and merons in chiral magnets with easy-plane anisotropy
- The nature of domain walls in ultrathin ferromagnets revealed by scanning nanomagnetometry
- Topological defects as relics of emergent continuous symmetry and Higgs condensation of disorder in ferroelectrics
- Three-dimensional crystals of adaptive knots