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Ming-Qi Zhu

Researcher at Taiyuan University of Technology

Publications -  5
Citations -  25

Ming-Qi Zhu is an academic researcher from Taiyuan University of Technology. The author has contributed to research in topics: Fiber laser & Saturable absorption. The author has an hindex of 1, co-authored 1 publications receiving 6 citations.

Papers
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Restoring the silenced surface second-harmonic generation in split-ring resonators by magnetic and electric mode matching.

TL;DR: This study proposes and demonstrates that the silenced SHG in a gold split-ring resonator can be effectively restored by carefully tailoring its gap geometry to avoid the cancellation of nonlinear fields in the gap and simultaneously achieve both spatial and frequency mode matching between the magnetic and the electric dipolar resonances.
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Passively mode-locked Er-doped fiber laser based on a ferromagnetic insulator Cr2Si2Te6 as a saturable absorber.

TL;DR: In this paper , a new type of ferromagnetic insulator and its nonlinear optical absorption characteristics and related ultrafast modulation applications were investigated, and the experimental results reveal that Cr2Si2Te6 with excellent saturable absorption characteristics can be used as a SA to obtain ultrafast pulse lasers.
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Demonstration of passively Q-switched and mode-locked operations through dispersion control in Er-doped fiber lasers with a cylindrite-based saturable absorber

TL;DR: In this paper , cylindrite nanosheets are prepared successfully by the liquid phase exfoliation (LPE) method and nonlinear optical absorption properties are studied firstly in advance of exploring the potential and feasibility in the field of ultrashort pulse fiber lasers.
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Generation of bright-dark soliton pairs based on a ferromagnetic insulator Cr2Si2Te6 as a modulator in an Er-doped fiber laser.

TL;DR: In this paper , a saturable absorber (SA) based on Cr2Si2Te6 (CST), with a modulation depth of 14.90% and saturation intensity of 4.81MW/cm2, was prepared by a liquid phase stripping method.
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Multi-element two-dimensional compounds Pb3Sn4FeSb2S14 as saturable absorber to demonstrate large-energy mode-locked pulse generations

TL;DR: In this article , Pb3Sn4FeSb2S14-polyvinyl alcohol film was prepared and its nonlinear optical properties were studied, the saturable intensity and the modulation depth of Pb 3Sn4 FeSb 2S14 saturable absorber were 18.66 MW/cm2 and 3.94 %, respectively.