研究目的
Investigating frequency-induced polarization switching and bistability characteristics in a 1550 nm VCSEL subject to parallel optical injection.
研究成果
The study demonstrates that frequency-induced polarization switching and bistability can be controlled in a 1550 nm VCSEL under parallel optical injection by adjusting the injection power and biased current. The findings suggest potential applications in optical interconnects, optical information processing, and all-optical switching.
研究不足
The study is limited to a specific type of VCSEL (1550 nm) and does not explore the effects of orthogonal or variable polarization optical injection. The experimental setup may not account for all possible external disturbances that could affect the VCSEL's performance.
1:Experimental Design and Method Selection:
The experiment involves subjecting a 1550 nm VCSEL to parallel optical injection and observing the effects on polarization switching and bistability by varying the frequency of the injection light.
2:Sample Selection and Data Sources:
A commercial 1550 nm VCSEL (RayCan) is used, with its temperature and current controlled by an ultra low-noise current source.
3:List of Experimental Equipment and Materials:
Tunable laser (Santec TSL-710), polarization controller (PC1), optical isolator (OI), fiber coupler (FC1), power meter (PM), three-port optical circulator (OC), optical spectrum analyzer (Aragon Photonics BOSA lite+), polarization beam splitter (PBS).
4:Experimental Procedures and Operational Workflow:
The frequency of the injection light is continuously varied to observe polarization switching and bistability, with the output power of X-PM and Y-PM measured.
5:Data Analysis Methods:
The output power of X-PM and Y-PM is analyzed as a function of frequency detuning ?ν to identify hysteresis loops and the effects of injection power and biased current.
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Tunable laser
TSL-710
Santec
Emitting continuous light for injection into the VCSEL
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Polarization controller
PC1
Adjusting the polarization direction of the injection light
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Optical isolator
OI
Preventing back reflections into the tunable laser
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Fiber coupler
FC1
Splitting the light into two parts for monitoring and injection
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Power meter
PM
Monitoring the injection power
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Optical circulator
OC
Directing the light from the tunable laser to the VCSEL and from the VCSEL to the detection system
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Optical spectrum analyzer
BOSA lite+
Aragon Photonics
Analyzing the optical spectrum of the VCSEL output
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Polarization beam splitter
PBS
Splitting the output light into X-PM and Y-PM for measurement
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Ultra low-noise current source
LDC-3724B
ILX-Lightwave
Controlling the temperature and current of the VCSEL
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