Room temperature single-photon emission from InGaN quantum dot ordered arrays in GaN nanoneedles

Author:

Saha Pratim K.1ORCID,Rana Kanchan Singh1,Thakur Navneet1,Parvez Bazila1ORCID,Bhat Shazan Ahmad1ORCID,Ganguly Swaroop1ORCID,Saha Dipankar1ORCID

Affiliation:

1. Applied Quantum Mechanics Laboratory, Indian Institute of Technology Bombay, Powai, Mumbai 400076, India

Abstract

GaN-based single-photon sources have received immense attention for applications in quantum technologies. An isolated semiconductor quantum dot (QD) is an attractive and proven choice. Most experimental demonstrations involve epitaxial growth or etching of the QD embedded in a vertical nanopillar/nanowire structure. Here, we demonstrate room-temperature single-photon emission from an InGaN QD embedded in a GaN nanoneedle. The nanoneedle is tapered at the bottom and is formed by a succession of inductively coupled plasma reactive ion etching and crystallographic direction-dependent wet etching techniques. The nanofabrication process steps yield reproducible and uniform-sized QDs in the needle structures. Cross-sectional SEM images show needles are centered at the center of a hexagonal base, which confirms a good crystalline property of the QD. Micro-photoluminescence measurements on a single QD manifest a short time constant for radiative decay channels without any prominent non-radiative decay path. Second-order correlation measurements confirm the antibunching of the emitted photons. Higher spectral purity and smaller value of the second-order correlation are maintained up to a good excitation power, indicating the usefulness of the methodology for quantum technologies.

Funder

Department of Science and Technology India

Publisher

AIP Publishing

Subject

Physics and Astronomy (miscellaneous)

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