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      SCOPUS SCIE

      Femtosecond Soliton Pulse Generation Using Evanescent Field Interaction Through Tungsten Disulfide (WS <sub>2</sub>) Film

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      https://www.riss.kr/link?id=A107736739

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      <P>We investigated nonlinear optical characteristics of Tungsten disulfide (WS<SUB>2</SUB>) films and experimentally demonstrated their high potential for application as nonlinear saturable absorbers in passively mode-locked fiber la...

      <P>We investigated nonlinear optical characteristics of Tungsten disulfide (WS<SUB>2</SUB>) films and experimentally demonstrated their high potential for application as nonlinear saturable absorbers in passively mode-locked fiber lasers. Side polished fiber (SPF) was fabricated and WS<SUB>2</SUB> film was overlaid to provide an efficient evanescent field interaction. The WS<SUB>2</SUB> film was prepared using two methods: liquid phase exfoliation to form few-layer nano-sheets, and chemical vapor deposition (CVD) to grow uniform multilayer WS<SUB>2</SUB> on a SiO<SUB>2</SUB> substrate. Two SPF saturable absorbers were prepared by either spin coating WS<SUB>2</SUB> solution or lifting off the multilayer CVD WS<SUB>2</SUB> on SPF. An all-fiber ring cavity was built and the WS<SUB>2</SUB> film overlaid on SPF was employed as a mode locker along with Er-doped fiber as a gain medium. Using the spin-coated WS<SUB>2</SUB> SPF, stable soliton-like pulses were generated with a spectral width of 5.6 nm and 467 fs pulse duration. The fiber laser cavity containing CVD WS<SUB>2</SUB> SPF generated a transform-limited soliton pulse train with a spectral width of 8.23 nm and a pulse duration of 332 fs. Our study confirmed a high potential of WS<SUB>2</SUB> film as a novel 2-D nonlinear optical material for laser applications.</P>

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