Vacuum ultraviolet optical properties of GaSb determined by synchrotron rotating analyzer ellipsometry: applications in nanopillars and plasmonics

Author:

Hale Nathan,Bjelland Victoria M.1,Cobet Christoph2,Esser Norbert34,Kildemo Morten

Affiliation:

1. European Organization for Nuclear Research (CERN)

2. Linz School of Education

3. Institut für Festkörperphysik, Technische Universität

4. Leibniz-Institut für Analytische Wissenschaften–ISAS–e.V.

Abstract

The vacuum ultraviolet (VUV) optical properties in the range 4 eV to 15 eV of GaSb have been determined by rotating analyzer ellipsometry (RAE) using synchrotron light. The localized surface plasmon resonances (LSPRs) and surface plasmon polaritons (SPPs) are studied as a means to understand the plasmonic behavior of GaSb. The large imaginary part of the dielectric function causes poor confinement of the SPP. Self-assembled GaSb nanopillars of 35 nm height are studied experimentally by RAE at different angles of incidence. The pillars are simulated numerically using an effective medium approach and the finite element method (FEM), where clear similarities between the simulations and experiment are observed. Additional dips in the reflectivity accompanied by increased nanopillar absorption and local field enhancement were observed near the surface of the pillars. These results demonstrate GaSb nanopillars to be promising candidates for photocathodes.

Funder

NTNU Nano Impact Fund

Bundesministerium für Bildung und Forschung

The Governing Mayor of Berlin-Senate Chancellery Higher Education and Research

Ministry for Culture and Science NRW

European Regional Development Fund

Publisher

Optica Publishing Group

Subject

Electronic, Optical and Magnetic Materials

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