Engineering Multicolor Radiative Centers in hBN Flakes by Varying the Electron Beam Irradiation Parameters

Author:

Bianco Federica1ORCID,Corte Emilio2,Ditalia Tchernij Sviatoslav2ORCID,Forneris Jacopo2ORCID,Fabbri Filippo1ORCID

Affiliation:

1. NEST Laboratory, Istituto Nanoscienze-CNR and Scuola Normale Superiore, Piazza San Silvestro 12, 56127 Pisa, Italy

2. Physics Department, University of Torino and Istituto Nazionale di Fisica Nucleare Sez. Torino, Via P. Giuria 11, 10125 Torino, Italy

Abstract

Recently, hBN has become an interesting platform for quantum optics due to the peculiar defect-related luminescence properties. In this work, multicolor radiative emissions are engineered and tailored by position-controlled low-energy electron irradiation. Varying the irradiation parameters, such as the electron beam energy and/or area dose, we are able to induce light emissions at different wavelengths in the green–red range. In particular, the 10 keV and 20 keV irradiation levels induce the appearance of broad emission in the orange–red range (600–660 nm), while 15 keV gives rise to a sharp emission in the green range (535 nm). The cumulative dose density increase demonstrates the presence of a threshold value. The overcoming of the threshold, which is different for each electron beam energy level, causes the generation of non-radiative recombination pathways.

Funder

Italian Ministry of University and Research

EMPIR program co-financed by the Participating States and from the European Union’s Horizon 2020 research and innovation framework

Publisher

MDPI AG

Subject

General Materials Science,General Chemical Engineering

Reference78 articles.

1. Effect of electron-irradiation on layered quantum materials;Dash;Bull. Mater. Sci.,2021

2. Engineering and modifying two-dimensional materials by electron beams;Zhao;MRS Bull.,2017

3. Are two-dimensional materials radiation tolerant?;Krasheninnikov;Nanoscale Horiz.,2020

4. Structure of graphene and its disorders: A review;Yang;Sci. Technol. Adv. Mater.,2018

5. Defect Engineering in 2D Materials: Precise Manipulation and Improved Functionalities;Jiang;Research,2022

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