Terahertz and Infrared Plasmon Polaritons in PtTe2 Type‐II Dirac Topological Semimetal

Author:

Macis Salvatore1,D'Arco Annalisa1,Mosesso Lorenzo1,Paolozzi Maria Chiara1,Tofani Silvia2,Tomarchio Luca1,Tummala Pinaka Pani3,Ghomi Sara3,Stopponi Veronica4,Bonaventura Eleonora35,Massetti Chiara3,Codegoni Davide6,Serafini Andrea6,Targa Paolo6,Zacchigna Michele4,Lamperti Alessio3ORCID,Martella Christian3ORCID,Molle Alessandro3ORCID,Lupi Stefano1

Affiliation:

1. Department of Physics Sapienza University Piazzale Aldo Moro 5 Rome 00185 Italy

2. CNR‐IMM Unit of Rome Via del Fosso del Cavaliere 100 Rome 00133 Italy

3. CNR‐IMM via C. Olivetti 2 Agrate Brianza (MB) I‐20864 Italy

4. CNR‐IOM Area Science Park Strada Statale 14, km 163,5 Basovizza TS 34149 Italy

5. Department of Materials Science University of Milano‐Bicocca Via Cozzi, 55 Milan 20125 Italy

6. STMicroelectronics via C. Olivetti 2 Agrate Brianza (MB) I‐20864 Italy

Abstract

AbstractSurface plasmon polaritons (SPPs) are electromagnetic excitations existing at the interface between a metal and a dielectric. SPPs provide a promising path in nanophotonic devices for light manipulation at the micro and nanoscale with applications in optoelectronics, biomedicine, and energy harvesting. Recently, SPPs are extended to unconventional materials like graphene, transparent oxides, superconductors, and topological systems characterized by linearly dispersive electronic bands. In this respect, 3D Dirac and Weyl semimetals offer a promising frontier for infrared (IR) and terahertz (THz) radiation tuning by topologically‐protected SPPs. In this work, the THz‐IR optical response of platinum ditelluride (PtTe2) type‐II Dirac topological semimetal films grown on Si substrates is investigated. SPPs generated on microscale ribbon arrays of PtTe2 are detected in the far‐field limit, finding an excellent agreement among measurements, theoretical models, and electromagnetic simulation data. The far‐field measurements are further supported by near‐field IR data which indicate a strong electric field enhancement due to the SPP excitation near the ribbon edges. The present findings indicate that the PtTe2 ribbon array appears an ideal active layout for geometrically tunable SPPs thus inspiring a new fashion of optically tunable materials in the technologically demanding THz and IR spectrum.

Publisher

Wiley

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