Manipulation of photoluminescence of two-dimensional MoSe2 by gold nanoantennas
Управление фотолюминесценцией двумерного MoSe₂ с помощью золотых наноантенн
2016-02-29
SCID: 54.1/xbhqdvfe
Discuss with AI
TMDC–plasmonic hybrid structuresgold plasmonic nanoantennasmonolayer MoSe2photoluminescence manipulationpolarization-dependent emission
Figures from the paper
Abstract (AI)
Monolayer molybdenum diselenide (MoSe2), a member of the TMDCs family, is an appealing candidate for coupling to gold plasmonic nanostructures as it has smaller bandgap and higher electron mobility in comparison to frequently studied molybdenum disulfide (MoS2). The PL of MoSe2 occurs in the near-infrared spectral range where the emissive properties do not suffer from the enhanced dissipation in the gold due to inter-band transitions. Here, we study the interaction between monolayer MoSe2 and plasmonic dipolar antennas in resonance with the PL emission of MoSe2. By varying the thickness of the spacer between the MoSe2 layer and nanoantenna, we demonstrate manipulation of the PL intensity from nearly fourfold quenching to approximately threefold enhancement. Furthermore, we show that the coupled TMDC-nanoantenna system exhibits strong polarization-dependent PL, thus offering the possibility of polarization-based emission control. Our experimental results are supported by numerical simulations as well. To the best of our knowledge, this is the first study of Au-MoSe2 plasmonic hybrid structures realizing flexible PL manipulation.
Key Findings
1
Experimental observations of photoluminescence manipulation are supported by numerical simulations.
2
Gold plasmonic dipole antennas resonant with MoSe2 photoluminescence enable substantial control of monolayer MoSe2 emission.
3
The coupled MoSe2–nanoantenna system exhibits strong polarization-dependent photoluminescence, enabling polarization-based emission control.
4
The study reports the first Au–MoSe2 plasmonic hybrid structures demonstrating flexible photoluminescence manipulation, according to the authors.
5
Varying the spacer thickness tunes MoSe2 photoluminescence from nearly fourfold quenching to approximately threefold enhancement.
Research Object
monolayer MoSe2 coupled to gold plasmonic dipolar nanoantennas
Research Subject
manipulation of photoluminescence intensity and polarization dependence through spacer thickness and plasmonic coupling
Publication Details
Publication Date
2016-02-29
Journal
Publisher
ISSN
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest