研究目的
Investigating the combined effect of intercore crosstalk (XT) and the frequency offset between optical carriers, defined as the carrier beating impairment (CBI), in weakly coupled multicore fiber (WC-MCF)-based intensity-modulation/direct-detection (IM/DD) systems.
研究成果
The CBI, mainly consisting of the OC-OCXT term, the OC-SXT term, and the S-OCXT term, causes significant SNR degradation in WC-MCF-based IM/DD systems. The maximum tolerable XT level decreases to approximately -45 dB when there is CBI for PAM-4 transmissions. The XT level of WC-MCF should be designed to be much smaller to avoid SNR degradation caused by the CBI.
研究不足
The study is limited by the specific properties of the laser source and the modulation depth of the transmitted signals, which mainly affect the CBI. Additionally, the time-dependence of XT and the insufficient samples of experiment may cause discrepancies between simulation results and experimental results.
1:Experimental Design and Method Selection:
The study involves experimental and numerical simulation approaches to measure and characterize the CBI in WC-MCF-based IM/DD systems.
2:Sample Selection and Data Sources:
Two types of transmitter schemes are introduced for the WC-MCF-based short-reach IM/DD systems, namely, the laser shared scheme and the laser non-shared scheme.
3:List of Experimental Equipment and Materials:
Includes a 4-channel thermally tuned external cavity laser (ECL), variable optical attenuators (VOAs), polarization controller (PC), photo diode (PD), digital storage oscilloscope (DSO), arbitrary waveform generator (AWG), Mach-Zehnder modulator (MZM), and a
4:5-km 7-core homogeneous step-index WC-MCF. Experimental Procedures and Operational Workflow:
The experimental setup involves measuring the carrier beating phenomenon for the laser shared scheme and the laser non-shared scheme, and then measuring the CBI for a real WC-MCF-based transmission link using 10 GBaud PAM-
5:Data Analysis Methods:
The short-time Fourier transform (STFT) method is used to analyze the instantaneous frequency (IF) spectrum of the waveform acquired by the DSO.
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Mach-Zehnder modulator
MX-LN-40
photline
Used to generate 10 GBaud PAM-4 optical signals.
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polarization controller
FPC560
Thorlabs
Used to align the polarization states before the 50:50 optical coupler.
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digital storage oscilloscope
Labmaster 10Zi-A
Lecroy
Used to acquire the output optical signals.
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arbitrary waveform generator
M8195A
Keysight
Used to generate 10 GBaud PAM-4 optical signals.
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external cavity laser
LaserBlade
coherent solutions
Used as the optical source in the experiment.
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variable optical attenuator
VOABlade
coherent solutions
Used to adjust the input power of the PD.
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photo diode
PIN
Used to detect the output optical signals.
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