Shift photocurrent vortices from topological polarization textures
arXiv:2408.04017 · doi:10.1038/s41699-025-00552-6
Abstract
Following the recent interest in van der Waals (vdW) ferroelectrics, topologically nontrivial polar structures have been predicted to form in twisted bilayers. However, these structures have proven difficult to observe experimentally. We propose that these textures may be probed optically by showing that topological polarization textures result in exotic nonlinear optical responses. We derive this relationship analytically using non-Abelian Berry connections and a quantum-geometric framework, supported by tight-binding and first-principles calculations. For the case of moiré materials without centrosymmetry, which form networks of polar merons and antimerons, the shift photoconductivity forms a vortex-like structure in real space. For a range of frequencies where transitions between topologically trivial bands occur at the Brillouin zone edge, the shift photocurrents are antiparallel to the in-plane electronic polarization field. Our findings highlight the interplay between complex polarization textures and nonlinear optical responses in vdW materials and provide a sought-after strategy for their experimental detection.
10+20 pages, 4+11 figures
References in corpus (41)
- Topological Insulators
- Topological insulators and superconductors
- Magic-angle graphene superlattices: a new platform for unconventional superconductivity
- Optimized norm-conserving Vanderbilt pseudopotentials
- Maximally localized Wannier functions: Theory and applications
- Moire bands in twisted double-layer graphene
- The PseudoDojo: Training and grading a 85 element optimized norm-conserving pseudopotential table
- Stacking-engineered ferroelectricity in bilayer boron nitride
- Interfacial Ferroelectricity by van-der-Waals Sliding
- Observation of Fractionally Quantized Anomalous Hall Effect
- Interfacial ferroelectricity in rhombohedral-stacked bilayer transition metal dichalcogenides
- Fractional Chern insulators in magic-angle twisted bilayer graphene
- Twistronics: Manipulating the Electronic Properties of Two-dimensional Layered Structures through their Twist Angle
- Integer and fractional Chern insulators in twisted bilayer MoTe2
- Strongly Correlated Chern Insulators in Magic-Angle Twisted Bilayer Graphene
- Interfacial ferroelectricity in marginally twisted 2D semiconductors
- Design principles for shift current photovoltaics
- Chern Insulators and Topological Flat-bands in Magic-angle Twisted Bilayer Graphene
- Relaxation and Domain Formation in Incommensurate 2D Heterostructures
- Skyrmions in the moiré of van der Waals 2D magnets
- Ab initio calculation of the shift photocurrent by Wannier interpolation
- General Theory for Bilayer Stacking Ferroelectricity
- A 2D ferroelectric vortex lattice in twisted BaTiO3 freestanding layers
- Essay: Where Can Quantum Geometry Lead Us?
- Photocurrent as a multi-physics diagnostic of quantum materials
- Spectral dynamics of topological shift-current in ferroelectric semiconductor SbSI
- Quantitative relationship between polarization differences and the zone-averaged shift photocurrent
- The PSML format and library for norm-conserving pseudopotential data curation and interoperability
- Polar meron-antimeron networks in strained and twisted bilayers
- Light-matter coupling and quantum geometry in moiré materials
- Nano-imaging photoresponse in a moiré unit cell
- Visualizing moiré ferroelectricity via plasmons and nano-photocurrent in graphene/twisted-WSe2 structures
- Twisted photovoltaics at terahertz frequencies from momentum shift current
- Flat bands and chiral optical response of moiré insulators
- Stacking-engineered ferroelectricity and multiferroic order in van der Waals magnets
- Quantized Integrated Shift Effect in Multigap Topological Phases
- Optical manifestations and bounds of topological Euler class
- Theory of polarization textures in crystal supercells
- Distinct moiré textures of in-plane electric polarizations for distinguishing moiré origins in homobilayers
- Geometrical theory of the shift current in presence of disorder and interaction
- Polarization textures in crystal supercells with topological bands