Photonics Insights, Volume. 1, Issue 1, R02(2022)
Topological photonics in metamaterials Story Video
Fig. 1. (a) Linear dispersion (light cone) of the 3D “massless” photon
Fig. 2. (a) Schematic diagram of WPs and the Fermi arcs. (b) Intrinsic topologically protected Fermi arcs connect two WPs with opposite chiralities. (c), (d) Structure and band topology of the ideal photonic Weyl metamaterial. (e) Experimental EFSs of the topological helicoidal surface states. (f), (g) A pseudo-gauge field generated by the space-dependent rotation angle supports a zeroth-order chiral Landau level with one-way propagation in ideal Weyl semimetals. (h) Dispersion spectrum of plasmonic WPs in magnetized plasma with time-reversal symmetry (TRS) broken. (i) Unit structure and EFS of an ideal unconventional Weyl semimetal in a chiral photonic metamaterial with
Fig. 3. (a) Unit of an I-shaped metamaterial satisfying the space group
Fig. 4. (a) Schematic of the 3D photonic Dirac metamaterial, with each unit cell consisting of eight helical elements satisfying
Fig. 5. (a) Band structures along high symmetry lines for (left panel) 3D gapless DP and (right panel) gapped TI, where the complete bandgap is shadowed. Inset: corresponding photonic metamaterial unit with/without breaking
Fig. 6. Illustration of the topological phase transition on the metamaterial platform.
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Shaojie Ma, Biao Yang, Shuang Zhang, "Topological photonics in metamaterials," Photon. Insights 1, R02 (2022)
Category: Review Articles
Received: Feb. 16, 2022
Accepted: May. 19, 2022
Published Online: Aug. 3, 2022
The Author Email: Shuang Zhang (shuzhang@hku.hk)