ELECTRICALLY PUMPED WAVEGUIDE LASING FROM ZNO NANOWIRES PDF

ELECTRICALLY PUMPED WAVEGUIDE LASING FROM ZNO NANOWIRES PDF

Electrically pumped near-ultraviolet lasing was achieved in a metal/insulator/ semiconductor laser diode based on ZnO/MgO core/shell nanowires. The nanowire. We report electrically pumped Fabry-Perot (FP) type waveguide ultraviolet lasing from laser diodes that consist of Sb-doped p-type ZnO nanowires and n-type. Abstract. We report electrically pumped Fabry-Perot (FP) type waveguide ultraviolet lasing from laser diodes that consist of Sb-doped p-type ZnO nanowires and.

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Compared to these this one has done particularly well waveguode is in the 92nd percentile: Science and Innovations The data shown below were compiled from readership statistics for Mendeley readers of this research output. You do not have subscription access to this journal. Login laisng Create Account. Twitter Demographics The data shown below were collected from the profiles of 2 tweeters who shared this research output. You do not have subscription access to this journal.

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Electrically Pumped UV Nanowire Lasers

We’re also able to compare ;umped research output to 1, others from the same source and published within six weeks on either side of this one. To account for age we can compare this Altmetric Attention Score to the 6, tracked outputs that were published within six weeks on either side of this one in any source. Equations are available to subscribers only. We report electrically pumped Fabry-Perot FP type waveguide ultraviolet lasing from laser diodes that consist of Sb-doped p-type ZnO nanowires and n-type ZnO thin films.

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Semiconductor nanowires or other wire-like nanostructures, including nanoribbons and nanobelts synthesized by bottom-up chemical growth show single-crystalline structures, excellent geometric uniformities, subwavelength transverse dimensions, and relatively high refractive indices, making these one-dimensional structures ideal optical nanowaveguides with tight optical confinement and low scattering loss.

Ultraviolet semiconductor lasers are widely used for applications in photonics, information storage, biology and medical therapeutics. Remember me on this computer. Attention Score in Context. Right click equation to reveal menu options. Altmetric has tracked 6, research outputs across all sources so far. This is our high-level measure of the quality and quantity of online attention that it has received.

OSA will be closed for the holidays from 21 December Advances in Optics and Photonics Vol. Above-average Attention Score compared to outputs of the same age and source 62nd percentile. Not Accessible Your account may give you access.

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Here, we demonstrate electrically pumped Fabry-Perot type waveguide lasing from laser diodes ellectrically consist of Sb-doped p-type ZnO nanowires and n-type ZnO thin films. This research output has an Altmetric Attention Score of Click here to find out more about how the information was compiled.

View on publisher site Alert me about new mentions. When properly pumped by optical or electrical means, lasing oscillation can be readily established inside these high-gain active nanowires with feedback from endface reflection or near-field coupling effects, making it possible to realize nanowire lasers with elevtrically sizes and high flexibilities.

Altmetric – Electrically pumped waveguide lasing from ZnO nanowires

The diodes exhibit highly stable lasing at room temperature. Citation lists with outbound citation links are available to subscribers only. ZnO-based random lasing has been demonstrated with both optical and electrical pumping, but random lasers suffer from reduced output powers, unstable emission spectra and beam divergence. By continuing to use this site, you agree to our use of cookies. Here, we present a review of the status and perspectives of semiconductor nanowire lasers, with a particular emphasis on their optical characteristics categorized in two groups: Slectrically may subscribe either as an OSA member, or as an authorized user of your institution.

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