2021
DOI: 10.1364/josab.423734
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Spaser and optical amplification conditions in graphene-coated active wires

Abstract: This work analyzes the optical properties of a localized surface plasmon (LSP) spaser made of a dielectric active wire coated with a graphene monolayer. Our theoretical results, obtained by using rigorous electromagnetic methods, illustrate the non-radiative transfer between the active medium and the LSPs of graphene. In particular, we focus on the lasing conditions and the tunability of the LSP spaser in two cases: when the wire is made of an infrared/terahertz transparent dielectric material and when it is m… Show more

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Cited by 21 publications
(9 citation statements)
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“…Reciprocally, they can be coupled to incident radiation without using any additional device, which is why normally incident plane waves were used as the excitation mechanism in Ref. [28]. On the other hand, the propagating modes studied in this paper exhibit radiative or nonradiative behavior depending on the value of k z .…”
Section: Or Electrically By Charge Carriers Injection Into a Semicond...mentioning
confidence: 98%
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“…Reciprocally, they can be coupled to incident radiation without using any additional device, which is why normally incident plane waves were used as the excitation mechanism in Ref. [28]. On the other hand, the propagating modes studied in this paper exhibit radiative or nonradiative behavior depending on the value of k z .…”
Section: Or Electrically By Charge Carriers Injection Into a Semicond...mentioning
confidence: 98%
“…Terahertz graphene-based spasers with cylindrical geometries, the kind of structure considered in this paper, were studied in [27] and [28]. Wheras in [27] the inner active medium consists of an axially-located single quantum wire and the analysis is limited to the electrostatic regime exclusively, here we consider that the active medium occupies the entire interior and we use a fully retarded rigorous electromagnetic analysis.…”
Section: Or Electrically By Charge Carriers Injection Into a Semicond...mentioning
confidence: 99%
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“…The resonances on the graphene plasmon modes are actively studied today and have already found applications in the design of novel biosensors [5][6][7] and antennas [8] in the mid-infrared and THz ranges. The use of graphene, instead of the noble metals, in the design of plasmonic nanolasers is also actively discussed [9].…”
Section: Introductionmentioning
confidence: 99%