Integration of Single-Photon Emitters in 2D Materials with Plasmonic Waveguides at Room Temperature
Abstract
:1. Introduction
2. Materials and Methods
2.1. Sample Preparation
2.2. Numerical Simulations
2.3. Experimental Setup
3. Results
4. Conclusions
Author Contributions
Funding
Conflicts of Interest
References
- Aharonovich, I.; Englund, D.; Toth, M. Solid-State single-photon emitters. Nat. Photon. 2016, 10, 631–641. [Google Scholar] [CrossRef]
- Yonezu, Y.; Wakui, K.; Furusawa, K.; Takeoka, M.; Semba, K.; Aoki, T. Efficient single-photon coupling from a nitrogen-vacancy center embedded in a diamond nanowire utilizing an optical nanofiber. Sci. Rep. 2017, 7, 12985. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Chen, Y.T.; Nielsen, T.R.; Gregersen, N.; Lodahl, P.; Mørk, J. Finite-Element modeling of spontaneous emission of a quantum emitter at nanoscale proximity to plasmonic waveguides. Phys. Rev. B 2010, 81, 125431. [Google Scholar] [CrossRef] [Green Version]
- Schörner, C.; Adhikari, S.; Lippitz, M.A. Single-Crystalline silver plasmonic circuit for visible quantum emitters. Nano Lett. 2019, 19, 3238–3243. [Google Scholar] [CrossRef] [Green Version]
- Kim, S.; Duong, N.M.H.; Nguyen, M.; Lu, T.J.; Kianinia, M.; Mendelson, N.; Solntsev, A.; Bradac, C.; Englund, D.R.; Aharonovich, I. Integrated on chip platform with quantum emitters in layered materials. Adv. Opt. Mater. 2019, 7, 1901132. [Google Scholar] [CrossRef] [Green Version]
- Peyskens, F.; Chakraborty, C.; Muneeb, M.; Thourhout, D.V.; Englund, D. Integration of single photon emitters in 2D layered materials with a silicon nitride photonic chip. Nat. Commun. 2019, 10, 4435. [Google Scholar] [CrossRef]
- Siampour, H.; Kumar, S.; Bozhevolnyi, S.I. Nanofabrication of plasmonic circuits containing single photon sources. ACS Photon. 2017, 4, 1879–1884. [Google Scholar] [CrossRef] [Green Version]
- Huck, A.; Andersen, U.L. Coupling single emitters to quantum plasmonic circuits. Nanophotonics 2016, 5, 483–495. [Google Scholar] [CrossRef] [Green Version]
- Marseglia, L.; Saha, K.; Ajoy, A.; Schröder, T.; Englund, D.; Jelezko, F.; Walsworth, R.; Pacheco, J.L.; Perry, D.L.; Bielejec, E.S.; et al. Bright nanowire single photon source based on SiV centers in diamond. Opt. Express 2018, 26, 80–89. [Google Scholar] [CrossRef] [Green Version]
- Akimov, A.V.; Mukherjee, A.; Yu, C.L.; Chang, D.E.; Zibrov, A.S.; Hemmer, P.R.; Park, H.; Lukin, M.D. Generation of single optical plasmons in metallic nanowires coupled to quantum dots. Nature 2007, 450, 402–406. [Google Scholar] [CrossRef]
- Kumar, S.; Bozhevolnyi, S.I. Excitation of hybrid plasmonic waveguide modes by colloidal quantum dots. ACS Photon. 2019, 6, 1587–1593. [Google Scholar] [CrossRef]
- De-Torres, J.; Ferrand, P.; des Francs, G.C.; Wenger, J. Coupling emitters and silver nanowires to achieve long-range plasmon-mediated fluorescence energy transfer. ACS Nano 2016, 10, 3968–3976. [Google Scholar] [CrossRef] [PubMed]
- Bermùdez-Ureña, E.; Gonzalez-Ballestero, C.; Geiselmann, M.; Marty, R.; Radko, L.P.; Holmgaard, T.; Alaverdyan, Y.; Moreno, E.; Garcìa-Vidal, F.J.; Bozhevolnyi, S.I.; et al. Coupling of individual quantum emitters to channel plasmons. Nat. Commun. 2015, 6, 7883. [Google Scholar] [CrossRef] [PubMed]
- Sadzak, N.; Hèritier, M.; Benson, O. Coupling a single nitrogen-vacancy center in nanodiamond to superparamagnetic nanoparticles. Sci. Rep. 2018, 8, 8430. [Google Scholar] [CrossRef] [PubMed]
- Schell, A.W.; Kewes, G.; Hanke, T.; Leitenstorfer, A.; Bratschitsch, R.; Benson, O.; Aichele, T. Single defect centers in diamond nanocrystals as quantum probes for plasmonic nanostructures. Opt. Express 2011, 8, 7914–7920. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Ratchford, D.; Shafiei, F.; Kim, S.; Gray, S.K.; Li, X. Manipulating coupling between a single semiconductor quantum dot and single gold nanoparticle. Nano Lett. 2011, 11, 1049–1054. [Google Scholar] [CrossRef] [PubMed]
- Nguyen, M.; Kim, S.; Tran, T.T.; Xu, Z.Q.; Kianinia, M.; Toth, M.; Aharonovich, I. Nanoassembly of quantum emitters in hexagonal boron nitride and gold nanospheres. Nanoscale 2018, 10, 2267–2274. [Google Scholar] [CrossRef]
- Siampour, H.; Kumar, S.; Davydov, V.A.; Kulikova, L.F.; Viatcheslav, N.A.; Bozhevolnyi, S.I. On-Chip excitation of single germanium vacancies in nanodiamonds embedded in plasmonic waveguides. Light Sci. Appl. 2018, 7, 61. [Google Scholar] [CrossRef]
- Gong, J.; Steinsultz, N.; Ouyang, M. Nanodiamond-Based nanostructures for coupling nitrogen-vacancy centres to metal nanoparticles and semiconductor quantum dots. Nat. Commun. 2016, 7, 11820. [Google Scholar] [CrossRef] [Green Version]
- Senellart, P.; Solomon, G.; White, A. High-Performance semiconductor quantum-dot single-photon sources. Nat. Nanotechol. 2017, 12, 1026–1039. [Google Scholar] [CrossRef]
- Tran, T.T.; Elbadawi, C.; Totonjian, D.; Lobo, C.J.; Grosso, G.; Moon, H.; Englund, E.R.; Ford, M.J.; Aharonovich, I.; Toth, M. Robust multicolor single photon emission from point defects in hexagonal boron nitride. ACS Nano 2016, 10, 7331–7338. [Google Scholar] [CrossRef] [PubMed]
- Ziegler, J.; Blaikie, A.; Fathalizadeh, A.; Miller, D.; Yasin, F.S.; Williams, K.; Mohrhardt, J.; McMorran, B.J.; Zettl, A.; Alemaán, B. Single-Photon emitters in boron nitride nanococoons. Nano Lett. 2018, 18, 2683–2688. [Google Scholar] [CrossRef] [PubMed]
- Tran, T.T.; Bray, K.; Ford, M.J.; Toth, M.; Aharonovich, I. Quantum emission from hexagonal boron nitride monolayers. Nat. Nanotechnol. 2016, 11, 37–41. [Google Scholar] [CrossRef] [PubMed]
- Grosso, G.; Moon, H.; Lienhard, B.; Ali, S.; Efetov, D.K.; Furchi, M.M.; Jarillo-Herrero, P.; Ford, M.J.; Aharonovich, I.; Englund, D. Tunable and high-purity room temperature single-photon emission from atomic defects in hexagonal boron nitride. Nat. Commun. 2017, 8, 705. [Google Scholar] [CrossRef] [PubMed]
- Gottscholl, A.; Kianinia, M.; Soltamov, V.; Orlinskii, S.; Mamin, G.; Bradac, C.; Kasper, C.; Krambrock, K.; Sperlich, A.; Toth, M.; et al. Initialization and read-out of intrinsic spin defects in a van der Waals crystal at room temperature. Nat. Mater. 2020, 19, 540–545. [Google Scholar] [CrossRef]
- Kim, J.Y.; Song, J.H.; Jeong, K.Y.; Ee, H.S.; Seo, M.K. Full three-dimensional power flow analysis of single-emitter-plasmonic-nanoantenna system. Opt. Express 2015, 23, 11080–11091. [Google Scholar] [CrossRef]
- Huang, K.C.Y.; Jun, Y.C.; Seo, M.K.; Brongersma, M.L. Power flow from a dipole emitter near an optical antenna. Opt. Express 2011, 19, 19084–19092. [Google Scholar] [CrossRef]
- Ditlbacher, H.; Hohenau, A.; Wagner, D.; Kreibig, U.; Rogers, M.; Hofer, F.; Aussenegg, F.R.; Krenn, J.R. Silver nanowires as surface plasmon resonators. Phys. Rev. Lett. 2005, 95, 257403. [Google Scholar] [CrossRef]
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Jeong, K.-Y.; Lee, S.W.; Choi, J.-H.; So, J.-P.; Park, H.-G. Integration of Single-Photon Emitters in 2D Materials with Plasmonic Waveguides at Room Temperature. Nanomaterials 2020, 10, 1663. https://doi.org/10.3390/nano10091663
Jeong K-Y, Lee SW, Choi J-H, So J-P, Park H-G. Integration of Single-Photon Emitters in 2D Materials with Plasmonic Waveguides at Room Temperature. Nanomaterials. 2020; 10(9):1663. https://doi.org/10.3390/nano10091663
Chicago/Turabian StyleJeong, Kwang-Yong, Seong Won Lee, Jae-Hyuck Choi, Jae-Pil So, and Hong-Gyu Park. 2020. "Integration of Single-Photon Emitters in 2D Materials with Plasmonic Waveguides at Room Temperature" Nanomaterials 10, no. 9: 1663. https://doi.org/10.3390/nano10091663
APA StyleJeong, K. -Y., Lee, S. W., Choi, J. -H., So, J. -P., & Park, H. -G. (2020). Integration of Single-Photon Emitters in 2D Materials with Plasmonic Waveguides at Room Temperature. Nanomaterials, 10(9), 1663. https://doi.org/10.3390/nano10091663