Circular dichroism of emergent chiral stacking orders in quasi-one-dimensional charge density waves
arXiv:2112.13100 · doi:10.1103/PhysRevLett.128.046401
Abstract
Chirality-driven optical properties in charge density waves are of fundamental and practical importance. Here, we investigate the interaction between circularly polarized light and emergent chiral stacking orders in quasi-one-dimensional (quasi-1D) charge-density waves (CDW) with density-functional theory calculations. In our specific system, self-assembled In nanowires on Si(111) surface, spontaneous mirror symmetry breaking leads to symmetrically distinct four degenerate quasi-1D CDW structures, which exhibit geometrical chirality. Such geometrical chirality may naturally induce optically active phenomena even when the quasi-1D CDW structures are stacked perpendicular to the CDW chain direction. Indeed, we find that left- and right-chiral stacking orders show distinct circular dichroism responses while a nonchiral stacking order does no circular dichroism. Such optical responses are attributed to the existence of glide mirror symmetry of the CDW stacking orders. Our findings suggest that the CDW chiral stacking orders can lead to diverse active optical phenomena such as chirality-dependent circular dichroism, which can be observed in scanning tunneling luminescence measurements with circularly polarized light.
5 pages, 4 figures + Supplemental Material, accepted in Phys. Rev. Lett
References in corpus (11)
- Valley Dependent Optoelectronics from Inversion Symmetry Breaking
- Quantum teleportation between light and matter
- Discovery of unconventional chiral charge order in kagome superconductor KV3Sb5
- Electronic nature of chiral charge order in the kagome superconductor CsV3Sb5
- Intrinsic nature of chiral charge order in the kagome superconductor RbV3Sb5
- Optical detection and manipulation of spontaneous gyrotropic electronic order in a transition-metal dichalcogenide semimetal
- Topological Solitons versus Non-Solitonic Phase Defects in Quasi-One-Dimensional Charge Density Wave
- Switching Chiral Solitons for Algebraic Operation of Topological Quaternary Digits
- Driving force of phase transition in Indium nanowires on Si(111)
- Equivalence of Electronic and Mechanical Stresses in Structural Phase Stabilization: A Case Study of Indium Wires on Si(111)
- Two-dimensional chiral stacking orders in quasi-one-dimensional charge density waves
Cited by in corpus (6)
- Two-dimensional rare-earth Janus 2-Gd (,=Cl, Br, I, ) monolayers: Bipolar ferro-magnetic semiconductors with high Curie temperature and large valley polarization
- Altermagnetism in Two Dimensional CaRuO Perovskite
- Chiral charge density wave and backscattering-immune orbital texture in monolayer 1T-TiTe2
- Valley-dependent electronic properties in two-dimensional altermagnetic iron-based transition metal chalcogenides
- Inducing Quantum Phase Transitions in Non-Topological Insulators Via Atomic Control of Sub-Structural Elements
- Revealing inverted chirality of hidden domain wall states in multiband systems without topological transition