研究目的
Investigating the use of ZnS nanospheres as optical modulators in an Er-doped fiber laser to achieve high modulation frequency.
研究成果
The experimental results show that the all-optical phase modulator has broad application prospect in all-optical phase processing and communication. The repetition rate can reach 29.1 MHz (the highest modulation frequency so far) and the pulse interval is 34.36 ns. This not only demonstrates the nonlinear optical properties of ZnS nanomaterials, but also provides new ideas for the research of ZnS materials in the field of nonlinear optics and ultrafast optics.
研究不足
Due to the pump limitation at present, the situation at higher pump power has not been studied.
1:Experimental Design and Method Selection:
ZnS nanospheres are synthesized by the hydrothermal method and used as optical modulators in an Er-doped fiber laser. The evanescent field effect is utilized to incorporate the ZnS nanospheres on a tapered fiber.
2:Sample Selection and Data Sources:
ZnS powder and acetone solution in a certain proportion are used to prepare ZnS solution.
3:List of Experimental Equipment and Materials:
Tapered fiber, 976 nm laser diode (LD) pump source, Er-doped fiber (EDF), ZnS nanospheres, optical spectrum analyzer, digital real-time oscilloscope, optical autocorrelator, radio frequency (RF) spectrum analyzer.
4:Experimental Procedures and Operational Workflow:
The ZnS material is ultrasonic for 2 h and carefully dripped into the optical fiber taper region. The laser pulse is modulated in a ring fiber laser with the pump source, EDF, and ZnS nanospheres as material in SA.
5:Data Analysis Methods:
The output pulse sequence and spectra are observed using an optical spectrum analyzer and a digital real-time oscilloscope. The pulse duration is measured by an optical autocorrelator. The frequency domain of output pulse is evaluated using a RF spectrum analyzer.
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optical spectrum analyzer
Anritsu MS9710C
Anritsu
Used to observe output spectra.
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tapered fiber
Used to incorporate ZnS nanospheres via the evanescent field effect.
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976 nm laser diode
LD
Pump source for the Er-doped fiber laser.
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Er-doped fiber
LIEKKI Er 80–8/125
Used in the fiber laser setup.
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digital real-time oscilloscope
Rigol DS6104
Rigol
Used to observe output pulse sequence.
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optical autocorrelator
FR-103XL
Used to measure pulse duration.
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radio frequency spectrum analyzer
Schwarz FSC6
Schwarz
Used to evaluate the frequency domain of output pulse.
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