Engineering the collapse of lifetime distribution of nitrogen-vacancy centers in nanodiamonds

We demonstrate experimentally that the distribution of the decay rates of nitrogen-vacancy centers in diamond becomes narrower by over five times for nanodiamonds embedded in thin chalcogenide films.

Bibliographic Details
Main Authors: Li, Hao, Ou, Jun-Yu, Gholipour, Behrad, So, Jin-Kyu, Piccinotti, Davide, Fedotov, Vassili. A., Papasimakis, Nikitas
Other Authors: School of Physical and Mathematical Sciences
Format: Journal Article
Language:English
Published: 2021
Subjects:
Online Access:https://hdl.handle.net/10356/153551
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author Li, Hao
Ou, Jun-Yu
Gholipour, Behrad
So, Jin-Kyu
Piccinotti, Davide
Fedotov, Vassili. A.
Papasimakis, Nikitas
author2 School of Physical and Mathematical Sciences
author_facet School of Physical and Mathematical Sciences
Li, Hao
Ou, Jun-Yu
Gholipour, Behrad
So, Jin-Kyu
Piccinotti, Davide
Fedotov, Vassili. A.
Papasimakis, Nikitas
author_sort Li, Hao
collection NTU
description We demonstrate experimentally that the distribution of the decay rates of nitrogen-vacancy centers in diamond becomes narrower by over five times for nanodiamonds embedded in thin chalcogenide films.
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spelling ntu-10356/1535512023-02-28T19:56:04Z Engineering the collapse of lifetime distribution of nitrogen-vacancy centers in nanodiamonds Li, Hao Ou, Jun-Yu Gholipour, Behrad So, Jin-Kyu Piccinotti, Davide Fedotov, Vassili. A. Papasimakis, Nikitas School of Physical and Mathematical Sciences The Photonics Institute Center for Disruptive Photonic Technologies Science::Physics Electric Dipole Moments Plasmonics We demonstrate experimentally that the distribution of the decay rates of nitrogen-vacancy centers in diamond becomes narrower by over five times for nanodiamonds embedded in thin chalcogenide films. Agency for Science, Technology and Research (A*STAR) Nanyang Technological University Published version The authors would like to acknowledge the financial support of the UK’s Engineering and Physical Sciences Research Council (Grants No. EP/M0091221), Nanyang Technological University Strategic Research Facilities Initiative and Singapore ASTAR QTE program (No. SERC A1685b0005), and China Scholarship Council (No. 201608440362) 2021-12-07T05:31:03Z 2021-12-07T05:31:03Z 2021 Journal Article Li, H., Ou, J., Gholipour, B., So, J., Piccinotti, D., Fedotov, V. A. & Papasimakis, N. (2021). Engineering the collapse of lifetime distribution of nitrogen-vacancy centers in nanodiamonds. Applied Physics Letters, 118(26), 261103-. https://dx.doi.org/10.1063/5.0054780 0003-6951 https://hdl.handle.net/10356/153551 10.1063/5.0054780 2-s2.0-85108868123 26 118 261103 en SERC A1685b0005 Applied Physics Letters © 2021 Author(s). All rights reserved. This paper was published by AIP Publishing in Applied Physics Letters and is made available with permission of Author(s). application/pdf
spellingShingle Science::Physics
Electric Dipole Moments
Plasmonics
Li, Hao
Ou, Jun-Yu
Gholipour, Behrad
So, Jin-Kyu
Piccinotti, Davide
Fedotov, Vassili. A.
Papasimakis, Nikitas
Engineering the collapse of lifetime distribution of nitrogen-vacancy centers in nanodiamonds
title Engineering the collapse of lifetime distribution of nitrogen-vacancy centers in nanodiamonds
title_full Engineering the collapse of lifetime distribution of nitrogen-vacancy centers in nanodiamonds
title_fullStr Engineering the collapse of lifetime distribution of nitrogen-vacancy centers in nanodiamonds
title_full_unstemmed Engineering the collapse of lifetime distribution of nitrogen-vacancy centers in nanodiamonds
title_short Engineering the collapse of lifetime distribution of nitrogen-vacancy centers in nanodiamonds
title_sort engineering the collapse of lifetime distribution of nitrogen vacancy centers in nanodiamonds
topic Science::Physics
Electric Dipole Moments
Plasmonics
url https://hdl.handle.net/10356/153551
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