Universal spin-momentum locking of evanescent waves
arXiv:1504.06361 · doi:10.1364/OPTICA.3.000118
Abstract
We show the existence of an inherent property of evanescent electromagnetic waves: spin-momentum locking, where the direction of momentum fundamentally locks the polarization of the wave. We trace the ultimate origin of this phenomenon to complex dispersion and causality requirements on evanescent waves. We demonstrate that every case of evanescent waves in total internal reflection, surface states and optical fibers/waveguides possesses this intrinsic spin-momentum locking. We also introduce a universal right-handed triplet consisting of momentum, decay and spin for evanescent waves. We derive the Stokes parameters for evanescent waves which reveal an intriguing result - every fast decaying evanescent wave is inherently circularly polarized with its handedness tied to the direction of propagation. We also show the existence of a fundamental angle associated with total internal reflection (TIR) such that propagating waves locally inherit perfect circular polarized characteristics from the evanescent wave. This circular TIR condition occurs if and only if the ratio of permittivities of the two dielectric media exceeds the golden ratio. Our work leads to a unified understanding of this spin-momentum locking in various nanophotonic experiments and sheds light on the electromagnetic analogy with the quantum spin hall state for electrons.
14 pages, 11 figures
References in corpus (4)
- Quantum Spin Hall Effect and Topological Phase Transition in HgTe Quantum Wells
- Topological Photonics
- Photonic Analogue of Two-dimensional Topological Insulators and Helical One-Way Edge Transport in Bi-Anisotropic Metamaterials
- Chiral nanophotonic waveguide interface based on spin-orbit coupling of light
Cited by in corpus (107)
- Topological Photonics
- Chiral Quantum Optics
- Optical skyrmions in evanescent electromagnetic fields
- Generalized Kerker Effects in Nanophotonics and Meta-Optics
- Nanoscale chiral valley-photon interface through optical spin-orbit coupling
- Near-field Radiative Heat Transfer in Many-Body Systems
- Janus and Huygens' dipolar sources for near-field directionality
- Quantum Spin of Elastic Wave
- Spin-orbit interaction of light induced by transverse spin angular momentum engineering
- Arbitrary order exceptional point induced by photonic spin-orbit interaction in coupled resonators
- Quantized photonic spin Hall effect in graphene
- Transverse spin dynamics of light: the generalized spin-momentum locking for structured guided modes
- Guiding waves along an infinitesimal line between impedance surfaces
- Universal Spin-Momentum Locked Optical Forces
- Universal spin-resolved thermal radiation laws for nonreciprocal bianisotropic media
- Ultrafast Microscopy of a Plasmonic Spin Skyrmion
- The magnetic and electric transverse spin density of spatially confined light
- Photonic Dirac monopoles and skyrmions: spin-1 quantization
- Bloch-type photonic skyrmions in optical chiral multilayers
- Tunable single-photon diode by chiral quantum physics
- A perspective of twisted photonic structures
- Thermal rectification and spin-spin coupling of non-reciprocal localized and surface modes
- Unidirectional and diffractionless surface plasmon-polaritons on three-dimensional nonreciprocal plasmonic platforms
- Thermal spin photonics in the near-field of nonreciprocal media
- Photonic Spin Hall Effect in Waveguides Composed of Two Types of Single-Negative Metamaterials
- Quantum gyro-electric effect: Photon spin-1 quantization in continuum topological bosonic phases
- Collective polaritonic modes in an array of two-level quantum emitters coupled to optical nanofiber
- Experimental Realization of Near-Field Photonic Routing with All-Electric Metasources
- Exploiting metamaterials, plasmonics and nanoantennas concepts in silicon photonics
- Mapping the near-field spin angular momenta in the structured surface plasmon polaritons field
- Spin angular momentum in planar and cylindrical waveguides induced by transverse confinement and intrinsic helicity of guided light
- Symmetry-protected photonic chiral spin textures by spin-orbit coupling
- Elastic Spin and Orbital Angular Momenta
- Non-local topological electromagnetic phases of matter
- Transport and collective radiance in a basic quantum chiral optical model
- Chiral quantum optics in photonic sawtooth lattices
- Circularly polarized thermal radiation from nonequilibrium coupled antennas
- Intrinsic spin-momentum dynamics of surface electromagnetic waves in complex dispersive system
- Quantum field theory for spin operator of the photon
- Far-field and near-field directionality in acoustic scattering
- Spin-momentum locked interaction between guided photons and surface electrons in topological insulators
- Trapped atoms and superradiance on an integrated nanophotonic microring circuit
- Unidirectional Maxwellian Spin Waves
- Polarisation control of linear dipole radiation using spin-momentum locking of light
- Complete polarization control for a nanofiber waveguide using directional coupling
- Near-Field Directionality Beyond the Dipole Approximation: Electric Quadrupole and Higher-Order Multipole Angular Spectra
- Quantum sensing of photonic spin density
- Perfect Chirality with imperfect polarisation
- Spin Angular Momentum Transfer and Plasmogalvanic Phenomena
- Absence of topological protection of the interface states in photonic crystals
- Optical forces from near-field directionalities in planar structures
- Amplitude and phase control of guided modes excitation from a single dipole source:engineering far- and near-field directionality
- Evanescent Gravitational Waves
- Non-Contact Spin Pumping by Microwave Evanescent Fields
- Light-matter interactions near photonic Weyl points
- Directional scattering from particles under evanescent wave illumination: the role of reactive power
- Lateral Casimir-Polder forces by breaking time-reversal symmetry
- Spin/momentum properties of the paraxial optical beams
- Transverse spin in scattering of focused radially and azimuthally polarized vector beams
- Momentum-space geometric structure of helical evanescent waves and its implications on near-field directionality
- Effects of surface plasmons on spin currents in a thin film system
- Electron spin transport driven by surface plasmon polariton
- Intrinsic transverse spin angular momentum of fiber eigenmodes
- Breakdown of spin-to-helicity locking at the nanoscale in topological photonic crystal edge states
- Optical angular momentum derivation and evolution from vectorial field superposition
- Dynamical characteristics of electromagnetic field under conditions of total reflection
- Babinet-Complementary Structures for Implementation of Pseudospin-Polarized Waveguides
- Efficiently-coupled microring circuit for on-chip cavity QED with trapped atoms
- Origin of the repulsive Casimir force in giant polarization-interconversion materials
- Unidirectional plasmonic edge modes on general two-dimensional materials
- Switching Purcell effect with nonlinear epsilon-near-zero media
- Coherent perfect absorption mediated enhancement of transverse spin in a gap plasmon guide
- Optically induced electron spin currents in the Kretschmann configuration
- Nanotrappy: An open-source versatile package for cold-atom trapping close to nanostructures
- Spin Photonics in 3D Whispering Gallery Mode Resonators
- Classical Emergence of Intrinsic Spin-Orbit Interaction of Light at the Nanoscale
- Transverse spin angular momentum of space-time surface plasmon polariton wave packet
- Scheme for media conversion between electronic spin and photonic orbital angular momentum based on photonic nanocavity
- Full Polarization Control of Photons with Evanescent Wave Coupling in the Ultra Subwavelength Gap of Photonic Molecules
- Transverse multipolar light-matter couplings in evanescent waves
- Directional coupling of emitters into waveguides: A symmetry perspective
- Spin-governed topological surfaces and broken spin-momentum locking in a gyromagnetic medium
- Imaging light scattered by a subwavelength nanofiber, from near field to far field
- Imaging the transverse spin density of light via electromagnetically induced transparency
- The dependence of evanescent wave polarization on the losses of guided optical modes
- Optical polarization skyrmionic fields in free space
- Non-Hermitian unidirectional routing of photonic qubits
- Spin-momentum locked modes on anti-phase boundaries in photonic crystals
- Generalized Surface Polaritons and their quantum spin Hall effect
- Electron g-factor engineering for non-reciprocal spin photonics
- Piezoelectric microresonators for sensitive spin detection
- Dirac Wire
- Spectral singularity enhances transverse spin
- Observation of photonic spin-momentum locking due to coupling of achiral metamaterials and quantum dots
- Efficiency and Mechanism of Heat Flux Rectification with Non-Reciprocal Surface Waves in Weyl-Semi-Metals
- Dissipation Effect on Optical Force and Torque near Interfaces
- Theory of polarization-dependent phonon pumping in ferromagnetic/non-magnetic bilayers
- Dynamical thermal near-field routing with the non-reciprocal Weyl semi-metal CoSnS
- Interference-induced directional emission from an unpolarized two level emitter into a circulating cavity
- Photonic-Spin governed absorption in a mu-near-zero subwavelength gyromagnetic cylinder
- Coherent Control of Evanescent Waves via Beam Shaping
- Theory and Experiment of Chirality-induced Magnetic Nonreciprocity Manifested by Coupling Phase
- Optical Spin Sorting Chain
- Extraordinary transverse spin: Hidden vorticity of the energy flow and momentum distributions in propagating light fields
- Experimental observation of transverse spin of plasmon polaritons in a single-crystalline silver nanowire
- Brownian spin-locking effect
- Transverse magnetic routing of light emission in hybrid plasmonic-semiconductor nanostructures: Towards operation at room temperature