Investigation of star-shaped CS2-core photonic crystal fiber design and high-coherent octave-spanning supercontinuum generation
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1. School of Science, Xi’an Shiyou University, Xi’an 710065, China;2. Shaanxi Engineering Research Center of Oil and Gas Resource Optical Fiber Detection, Xi’an 710065, China;3. Shaanxi Key Laboratory of Measurement and Control Technology for Oil and Gas Wells, Xi’an 710065, China

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    Abstract:

    We propose a star-shaped photonic crystal fiber (PCF) structure with a carbon disulfide (CS2) core, characterized by flat dispersion and elevated nonlinearity, aimed at facilitating high-coherence octave-spanning supercontinuum generation (SCG). The optical properties of the CS2-core PCF were investigated through numerical simulations by varying structural parameters. Two optimized CS2-core PCF structures were identified for achieving optimal bandwidth and high-coherence SCG. The first fiber, designated as #F1, has a lattice spacing of Λ=1.8 μm. By pumping with a 100 fs input pulse at 1 554 nm and a power of 1 000 W, a flat octave-spanning SC extending from 1 113 nm to 2 357 nm can be generated. The second fiber, referred to as #F2, has a lattice spacing of Λ=1.3 μm. By pumping with a 50 fs input pulse at 1 750 nm and 1 500 W, a highly coherent SC ranging from 1 225 nm to 2 350 nm can be generated. This research presents a new PCF design for generating high-coherence octave-spanning SC that can be applied in biosensing, spectroscopy, and other fields.

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Chenglong WANG, Jin WEN, Yu PAN, Yin ZHANG, Lan YIN, Shuangchao QU. Investigation of star-shaped CS2-core photonic crystal fiber design and high-coherent octave-spanning supercontinuum generation[J]. Optoelectronics Letters,2026,22(8):462-468

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History
  • Received:March 08,2025
  • Revised:February 09,2026
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  • Online: August 24,2026
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