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Valley photonic crystals

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Article: 1905546 | Received 08 Feb 2021, Accepted 15 Mar 2021, Published online: 25 Apr 2021

References

  • Ozawa T, Price HM, Amo A, et al. Topological photonics. Rev Mod Phys. 2019;91:015006.
  • Lu L, Joannopoulos JD, Soljačić M. Topological photonics. Nat Photonics. 2014;8:821–23.
  • Khanikaev AB, Shvets G. Two-dimensional topological photonics. Nat Photonics. 2017;11:763–773.
  • Xie B-Y, Wang H-F, Zhu X-Y, et al. Photonics meets topology. Opt Express. 2018;26:24531.
  • Iwamoto S, Ota Y, Arakawa Y. Recent progress in topological waveguides and nanocavities in a semiconductor photonic crystal platform. Opt Mater Express. 2021;11:319–337.
  • Tan W, Sun Y, Chen H, et al. Photonic simulation of topological excitations in metamaterials. Sci Rep. 2014;4:3842.
  • Gao W, Lawrence M, Yang B, et al. Topological photonic phase in chiral hyperbolic metamaterials. Phys Rev Lett. 2015;114:037402.
  • Xiao M, Lin Q, Fan S. Hyperbolic weyl point in reciprocal chiral metamaterials. Phys Rev Lett. 2016;117:057401.
  • Slobozhanyuk AP, Khanikaev AB, Filonov DS, et al. Experimental demonstration of topological effects in bianisotropic metamaterials. Sci Rep. 2016;6:22270.
  • Hafezi M, Demler EA, Lukin MD, et al. Robust optical delay lines with topological protection. Nat Phys. 2011;7:907–912.
  • Hafezi M, Mittal S, Fan J, et al. Imaging topological edge states in silicon photonics. Nat Photonics. 2013;7:1001–1005.
  • Yin C, Chen Y, Jiang X, et al. Realizing topological edge states in a silicon nitride microring-based photonic integrated circuit. Opt Lett. 2016;41:4791.
  • Liang GQ, Chong YD. Optical resonator analog of a two-dimensional topological insulator. Phys Rev Lett. 2013;110:203904.
  • Poshakinskiy AV, Poddubny AN, Pilozzi L, et al. Radiative topological states in resonant photonic crystals. Phys Rev Lett. 2014;112:107403.
  • Xiao M, Zhang ZQ, Chan CT. Surface impedance and bulk band geometric phases in one-dimensional systems. Phys Rev X. 2014;4:021017.
  • Wang Z, Chong Y, Joannopoulos JD, et al. Observation of unidirectional backscattering-immune topological electromagnetic states. Nature. 2009;461:772–775.
  • Lu L, Fu L, Joannopoulos JD, et al. Weyl points and line nodes in gyroid photonic crystal. Nat Photonics. 2013;7:294–299.
  • Lu L, Wang Z, Ye D, et al. Experimental observation of Weyl points. Science. 2015;349:622–624.
  • Rechtsman MC, Zeuner JM, Plotnik Y, et al. Photonic Floquet topological insulators. Nature. 2013;496:196–200.
  • Noh J, Huang S, Leykam D, et al. Experimental observation of optical Weyl points and Fermi arc-like surface states. Nat Phys. 2017;13:611–617.
  • Zhang W, Chen X, Ye F. Plasmonic topological insulators for topological nanophotonics. Opt Lett. 2017;42:4063–4066.
  • Stutzer S, Plotnik Y, Lumer Y, et al. Photonic topological Anderson insulators. Nature. 2018;560:461–465.
  • Blanco-Redondo A, Andonegui I, Collins MJ, et al. Topological optical waveguiding in silicon and the transition between topological and trivial defect states. Phys Rev Lett. 2016;116:163901.
  • Poddubny A, Miroshnichenko A, Slobozhanyuk A, et al. Topological majorana states in zigzag chains of plasmonic nanoparticles. ACS Photonics. 2014;1:101–105.
  • St-Jean P, Goblot V, Galopin E, et al. Lasing in topological edge states of a one-dimensional lattice. Nat Photonics. 2017;11:651–656.
  • Haldane F, Raghu S. Possible realization of directional optical waveguides in photonic crystals with broken time-reversal symmetry. Phys Rev Lett. 2008;100:013904.
  • Wang Z, Chong Y, Joannopoulos J, et al. Reflection-free one-way edge modes in a gyromagnetic photonic crystal. Phys Rev Lett. 2008;100:013905.
  • Poo Y, Wu R-X, Lin Z, et al. Experimental realization of self-guiding unidirectional electromagnetic edge states. Phys Rev Lett. 2011;106:093903.
  • Khanikaev AB, Mousavi SH, Tse W-K, et al. Photonic topological insulators. Nat Mater. 2013;12:233–239.
  • Chen W-J, Jiang S-J, Chen X-D, et al. Experimental realization of photonic topological insulator in a uniaxial metacrystal waveguide. Nat Commun. 2014;5:5782.
  • Ma T, Khanikaev AB, Mousavi SH, et al. Guiding electromagnetic waves around sharp corners: topologically protected photonic transport in metawaveguides. Phys Rev Lett. 2015;114:127401.
  • Wu L-H, Hu X. Scheme for achieving a topological photonic crystal by using dielectric material. Phys Rev Lett. 2015;114:223901.
  • Cheng X, Jouvaud C, Ni X, et al. Robust reconfigurable electromagnetic pathways within a photonic topological insulator. Nat Mater. 2016;15:542–548.
  • He C, Sun X-C, Liu X-P, et al. Photonic topological insulator with broken time-reversal symmetry. Proc Nat Acad Sci. 2016;113:4924–4928.
  • Dong J-W, Chen X-D, Zhu H, et al. Valley photonic crystals for control of spin and topology. Nat Mater. 2016;16:298–302.
  • Ma T, Shvets G. All-si valley-Hall photonic topological insulator. New J Phys. 2016;18:025012.
  • Chen X-D, Zhao F-L, Chen M, et al. Valley-contrasting physics in all-dielectric photonic crystals: orbital angular momentum and topological propagation. Phys Rev B. 2017;96:020202(R).
  • Gao F, Xue H, Yang Z, et al. Topologically protected refraction of robust kink states in valley photonic crystals. Nat Phys. 2017;14:140–144.
  • Fang K, Yu Z, Fan S. Realizing effective magnetic field for photons by controlling the phase of dynamic modulation. Nat Photonics. 2012;6:782–787.
  • Gao F, Gao Z, Shi X, et al. Probing topological protection using a designer surface plasmon structure. Nat Commun. 2016;7:11619.
  • Chen X-D, Deng W-M, Zhao F-L, et al. Accidental double dirac cones and robust edge states in topological anisotropic photonic crystals. Laser Photonics Rev. 2018;12:1800073.
  • Yang Y, Xu YF, Xu T, et al. Visualization of a unidirectional electromagnetic waveguide using topological photonic crystals made of dielectric materials. Phys Rev Lett. 2018;120:217401.
  • Yang Y, Hang ZH. Topological whispering gallery modes in two-dimensional photonic crystal cavities. Opt Express. 2018;26:21235–21241.
  • Gorlach MA, Ni X, Smirnova DA, et al. Far-field probing of leaky topological states in all-dielectric metasurfaces. Nat Commun. 2018;9:909.
  • Peng S, Schilder NJ, Ni X, et al. Probing the band structure of topological silicon photonic lattices in the visible spectrum. Phys Rev Lett. 2019;122:117401.
  • Lu L, Fang C, Fu L, et al. Symmetry-protected topological photonic crystal in three dimensions. Nat Phys. 2016;12:337–340.
  • Slobozhanyuk A, Mousavi SH, Ni X, et al. Three-dimensional all-dielectric photonic topological insulators. Nat Photonics. 2017;11:130–136.
  • Yang Y, Gao Z, Xue H, et al. Realization of a three-dimensional photonic topological insulator. Nature. 2019;565:622–626.
  • Chen W-J, Xiao M, Chan CT. Photonic crystals possessing multiple Weyl points and the experimental observation of robust surface states. Nat Commun. 2016;7:13038.
  • Gao W, Yang B, Lawrence M, et al. Photonic Weyl degeneracies in magnetized plasma. Nat Commun. 2016;7:12435.
  • Yang B, Guo Q, Tremain B, et al. Ideal Weyl points and helicoid surface states in artificial photonic crystal structures. Science. 2018;359:1013–1016.
  • Wang Q, Xiao M, Liu H, et al. Optical interface states protected by synthetic weyl points. Phys Rev X. 2017;7:031032.
  • Ma T, Shvets G. Scattering-free edge states between heterogeneous photonic topological insulators. Phys Rev B. 2017;95:165102.
  • Wu X, Meng Y, Tian J, et al. Direct observation of valley-polarized topological edge states in designer surface plasmon crystals. Nat Commun. 2017;8:1304.
  • Ye L, Yang Y, Hong Hang Z, et al. Observation of valley-selective microwave transport in photonic crystals. Appl Phys Lett. 2017;111:251107.
  • He X-T, Liang E-T, Yuan -J-J, et al. A silicon-on-insulator slab for topological valley transport. Nat Commun. 2019;10:872.
  • Shalaev MI, Walasik W, Tsukernik A, et al. Robust topologically protected transport in photonic crystals at telecommunication wavelengths. Nature Nanotechnology. 2019;14:31–34.
  • Jung J, Zhang F, Qiao Z, et al. Valley-Hall kink and edge states in multilayer graphene. Phys Rev B. 2011;84:075418.
  • Ochiai T, Onoda M. Photonic analog of graphene model and its extension: dirac cone, symmetry, and edge states. Phys Rev B. 2009;80:155103.
  • Ochiai T. Photonic realization of the (2+1)-dimensional parity anomaly. Phys Rev B. 2012;86:075152.
  • Deng F, Sun Y, Wang X, et al. Observation of valley-dependent beams in photonic graphene. Opt Express. 2014;22:23605–23613.
  • Deng F, Li Y, Sun Y, et al. Valley-dependent beams controlled by pseudomagnetic field in distorted photonic graphene. Opt Lett. 2015;40:3380–3383.
  • Yves S, Berthelot T, Lerosey G, et al. Locally polarized wave propagation through crystalline metamaterials. Phys Rev B. 2020;101:035127.
  • Gao Z, Yang Z, Gao F, et al. Valley surface-wave photonic crystal and its bulk/edge transport. Phys Rev B. 2017;96:201402(R).
  • Noh J, Huang S, Chen KP, et al. Observation of photonic topological valley hall edge states. Phys Rev Lett. 2018;120:063902.
  • Song D, Paltoglou V, Liu S, et al. Unveiling pseudospin and angular momentum in photonic graphene. Nat Commun. 2015;6:6272.
  • Song D, Leykam D, Su J, et al. Valley vortex states and degeneracy lifting via photonic higher-band excitation. Phys Rev Lett. 2019;122:123903.
  • Smirnova D, Tripathi A, Kruk S, et al. Room-temperature lasing from nanophotonic topological cavities. Light Sci Appl. 2020;9:127.
  • Yang Y, Yamagami Y, Yu X, et al. Terahertz topological photonics for on-chip communication. Nat Photonics. 2020;14:446–451.
  • Zeng Y, Chattopadhyay U, Zhu B, et al. “Electrically pumped topological laser with valley edge modes. Nature. 2020;578:246–250.
  • Shalaev MI, Walasik W, Litchinitser NM. Optically tunable topological photonic crystal. Optica. 2019;6:839–844.
  • Lu J, Qiu C, Ke M, et al. Valley vortex states in sonic crystals. Phys Rev Lett. 2016;116:093901.
  • Ye L, Qiu C, Lu J, et al. Observation of acoustic valley vortex states and valley-chirality locked beam splitting. Phys Rev B. 2017;95:174106.
  • Wang M, Zhou W, Bi L, et al. Valley-locked waveguide transport in acoustic heterostructures. Nat Commun. 2020;11:3000.
  • Chen X-D, Shi F-L, Liu H, et al. Tunable electromagnetic flow control in valley photonic crystal waveguides. Phys Rev Appl. 2018;10: 044002.
  • Yves S, Fleury R, Berthelot T, et al. Crystalline metamaterials for topological properties at subwavelength scales. Nat Commun. 2017;8:16023.
  • Dubrovkin AM, Chattopadhyay U, Qiang B, et al. Near-field mapping of the edge mode of a topological valley slab waveguide at λ=1.55μm. Appl Phys Lett. 2020;116:191105.
  • Chen Q, Zhang L, He M, et al. Valley-Hall photonic topological insulators with dual-band kink states. Adv Opt Mater. 2019;7:1900036.
  • Zhang L, Yang Y, He M, et al. Valley kink states and topological channel intersections in substrate‐integrated photonic circuitry. Laser Photonics Rev. 2019;1900159. DOI:https://doi.org/10.1002/lpor.201900159
  • Arora S, Bauer T, Barczyk R, et al. Direct quantification of topological protection in symmetry-protected photonic edge states at telecom wavelengths. Light Sci Appl. 2021;10:9.
  • Collins MJ, Zhang F, Bojko R, et al. Integrated optical Dirac physics via inversion symmetry breaking. Phys Rev A. 2016;94:063827.
  • Ma J, Xi X, Sun X. Topological photonic integrated circuits based on valley kink states. Laser Photonics Rev. 2019;13:1900087.
  • Yang P, Jiang P, Guo X, et al. Topologically protected Mach–Zehnder interferometer. J Opt. 2020;22:105001.
  • Li Y, Yu Y, Liu F, et al. Topology-controlled photonic cavity based on the near-conservation of the valley degree of freedom. Phys Rev Lett. 2020;125:213902.
  • Kang Y, Ni X, Cheng X, et al. Pseudo-spin-valley coupled edge states in a photonic topological insulator. Nat Commun. 2018;9:3029.
  • Ni X, Purtseladze D, Smirnova DA, et al. Spin- and valley-polarized one-way Klein tunneling in photonic topological insulators. Sci Adv. 2018;4:8802.
  • Lu J-C, Chen X-D, Deng W-M, et al. One-way propagation of bulk states and robust edge states in photonic crystals with broken inversion and time-reversal symmetries. J Opt. 2018;20:075103.
  • Chan H-C, Guo G-Y. Tuning topological phase transitions in hexagonal photonic lattices made of triangular rods. Phys Rev B. 2018;97:045422.
  • He L, Ji HY, Wang YJ, et al. Topologically protected beam splitters and logic gates based on two-dimensional silicon photonic crystal slabs. Opt Express. 2020;28:34015–34023.
  • Arregui G, Gomis-Bresco J, Sotomayor-Torres CM, et al. Quantifying the robustness of topological slow light. Phys Rev Lett. 2021;126:027403.
  • Wu Y, Hu X, Gong Q. Reconfigurable topological states in valley photonic crystals. Phys Rev Mater. 2018;2:122201.
  • Jung M, Fan Z, Shvets G. Midinfrared plasmonic valleytronics in metagate-tuned graphene. Phys Rev Lett. 2018;121:086807.
  • Barik S, Karasahin A, Mittal S, et al. Chiral quantum optics using a topological resonator. Phys Rev B. 2020;101:205303.
  • Zhong H, Li Y, Song D, et al. Topological valley hall edge state lasing. Laser Photonics Rev. 2020;14:2000001.
  • Gong Y, Wong S, Bennett AJ, et al. Topological INSULATOR LASER USING VALLEY-HALL PHOTONIC Crystals. ACS Photonics. 2020;7:2089–2097.
  • Foster A, Jalali Mehrabad M, Dost R, et al. Chiral topological photonics with an embedded quantum emitter. Optica. 1690-1696;7:2020.
  • Chen Y, He X-T, Cheng Y-J, et al., “Topologically protected valley-dependent quantum photonic circuits”, arXiv2103.06686 (2021).
  • Gong S-H, Alpeggiani F, Sciacca B, et al. Nanoscale chiral valley-photon interface through optical spin-orbit coupling. Science. 2018;359:443–447.
  • Kamiya Y, Ge L, Hong T, et al. The nature of spin excitations in the one-third magnetization plateau phase of Ba3CoSb2O9. Nat Commun. 2018;9:2666.
  • Sun L, Wang C-Y, Krasnok A, et al. Separation of valley excitons in a MoS2 monolayer using a subwavelength asymmetric groove array. Nat Photonics. 2019;13:180–184.
  • Wang J, Li H, Ma Y, et al. Routing valley exciton emission of a WS2 monolayer via delocalized Bloch modes of in-plane inversion-symmetry-broken photonic crystal slabs. Light Sci Appl. 2020;9:148.