研究目的
Investigating the potential of tellurite all-solid hybrid microstructured optical fibers for chromatic dispersion control and broadband mid-infrared supercontinuum generation.
研究成果
The study demonstrates the successful fabrication of tellurite all-solid hybrid microstructured optical fibers with ultra-flattened chromatic dispersion profiles. Pumping these fibers at 2 μm generates a broad and highly coherent supercontinuum with high spectral flatness, suitable for applications such as spectroscopy and optical coherent tomography.
研究不足
The study is limited by the technical constraints of fiber fabrication and the need for precise control of structural parameters to achieve desired chromatic dispersion profiles.
1:Experimental Design and Method Selection:
The study employs tellurite all-solid hybrid microstructured optical fibers for chromatic dispersion control and supercontinuum generation. The methodology includes the fabrication of fibers with specific structural parameters and pumping them at 2 μm to generate supercontinuum.
2:Sample Selection and Data Sources:
Three tellurite glasses with compatible thermo-mechanical properties and suitable refractive index differences were selected for fiber fabrication.
3:List of Experimental Equipment and Materials:
The fabrication process involves the use of a thermal-mechanical analyzer, ultra-sonic drills, and optical spectrum analyzers for measurement.
4:Experimental Procedures and Operational Workflow:
The fibers were fabricated using the rod-in-tube technique, and supercontinuum generation experiments were performed with different pump powers.
5:Data Analysis Methods:
The chromatic dispersion was calculated with the full vectorial finite element method, and coherence was assessed by calculating the modulus of the complex degree of the first-order coherence.
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Thermal-mechanical analyzer
TMA8310
Rigaku
Analysis of thermo-mechanical properties
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FTIR spectrometer
Spectrum 100
Perkin Elmer
Measurement of material loss
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Optical spectrum analyzer
AQ6375
Yokogawa
Analysis of SC intensity spectrum
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Optical spectrum analyzer
AQ6377
Yokogawa
Analysis of SC intensity spectrum
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Lens
C028TME-D
Thorlabs
Launching the idler beam into the ASHMOF
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Precision spectrometer
GMR-IS
Measurement of glass refractive indices
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Variable neutral density filter
50FS02DV.2
Newport
Adjusting the launching power
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MIR laser beam imager
WinCamD FIR2-16-HR
Capturing the beam profile of the output SC
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