Results 161 to 170 of about 1,799 (199)
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2022
Abstract Important milestones in the path of development of semiconductor lasers are first indicated, followed by some basic equations related to semiconductor lasers. The design issues for attaining low threshold current, and high modulation bandwidth are then discussed.
Prasanta Kumar Basu +2 more
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Abstract Important milestones in the path of development of semiconductor lasers are first indicated, followed by some basic equations related to semiconductor lasers. The design issues for attaining low threshold current, and high modulation bandwidth are then discussed.
Prasanta Kumar Basu +2 more
openaire +2 more sources
Structural Engineering in Plasmon Nanolasers
This review focuses on structural engineering of lasers from the macroscale to the nanoscale, with an emphasis on plasmon nanolasers. Conventional lasers based on Fabry–Pérot cavities are limited in device size.
George C Schatz +2 more
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Optics and Photonics News, 2023
Recent advances in technology and physics offer new possibilities for efficient control of nanolasers, to enable faster information processing at lower powers.
Yuri Kivshar +2 more
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Recent advances in technology and physics offer new possibilities for efficient control of nanolasers, to enable faster information processing at lower powers.
Yuri Kivshar +2 more
exaly +2 more sources
High-Yield Plasmonic Nanolasers with Superior Stability for Sensing in Aqueous Solution
Plasmonic nanolasers with strong field confinement beyond the diffraction limit are an emergent tool for various applications, ranging from on-chip optical interconnectors to biomedical sensing and imaging.
Suo Wang, Lun Dai, Ren-Min Ma
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Nature Nanotechnology, 2018
Nanolasers generate coherent light at the nanoscale. In the past decade, they have attracted intense interest, because they are more compact, faster and more power-efficient than conventional lasers. Thanks to these capabilities, nanolasers are now an emergent tool for a variety of practical applications. In this Review, we explain the intrinsic merits
Ren-Min Ma, Rupert F. Oulton
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Nanolasers generate coherent light at the nanoscale. In the past decade, they have attracted intense interest, because they are more compact, faster and more power-efficient than conventional lasers. Thanks to these capabilities, nanolasers are now an emergent tool for a variety of practical applications. In this Review, we explain the intrinsic merits
Ren-Min Ma, Rupert F. Oulton
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Nanolaser – aktuelle Entwicklungsstufe
202135. Kongress der Deutschsprachigen Gesellschaft für Intraokularlinsen-Implantation, interventionelle und refraktive ...
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2018 International Conference on Optical MEMS and Nanophotonics (OMN), 2018
We propose and demonstrate a direct integration of a III-V nanolaser onto a silicon waveguide. By employing high-precision micro-transfer printing techniques, with an optimally designed photonic crystal nanolaser cavity, we experimentally achieved a coupling efficiency of 83% between the InGaAsP nanobeam laser and the single-mode silicon waveguide ...
Jungmin Lee, Yong-Hee Lee, Myung-Ki Kim
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We propose and demonstrate a direct integration of a III-V nanolaser onto a silicon waveguide. By employing high-precision micro-transfer printing techniques, with an optimally designed photonic crystal nanolaser cavity, we experimentally achieved a coupling efficiency of 83% between the InGaAsP nanobeam laser and the single-mode silicon waveguide ...
Jungmin Lee, Yong-Hee Lee, Myung-Ki Kim
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Self-polarized spin-nanolasers
Nature Nanotechnology, 2014Besides adding a new functionality to conventional lasers, spin-polarized lasers can, potentially, offer lower threshold currents and reach higher emission intensities. However, to achieve spin-polarized lasing emission a material should possess a slow spin relaxation and a high propensity to be injected with spin-polarized currents.
Ju-Ying, Chen +4 more
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Recent Progress in Nanolaser Technology
Advanced Materials, 2020AbstractNanolasers are key elements in the implementation of optical integrated circuits owing to their low lasing thresholds, high energy efficiencies, and high modulation speeds. With the development of semiconductor wafer growth and nanofabrication techniques, various types of wavelength‐scale and subwavelength‐scale nanolasers have been proposed ...
Kwang‐Yong Jeong +5 more
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IEEE Spectrum, 2009
The article presents an overview of a surface plasmon resonance laser. Surface plasmon resonance nanolasers, or spasers, are the smallest lasers yet made, and the device could pave the way toward ultrafast optical computing.
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The article presents an overview of a surface plasmon resonance laser. Surface plasmon resonance nanolasers, or spasers, are the smallest lasers yet made, and the device could pave the way toward ultrafast optical computing.
openaire +1 more source

