研究目的
To demonstrate a simple optical fiber delay in combination with a fast sweeping laser source for ultrafast phase modulation in a fully fibre-coupled cw THz spectrometer, improving acquisition speed and simplifying system architecture.
研究成果
The new system architecture significantly simplifies cw THz spectrometers by eliminating the need for active modulation, paving the way for compact and cost-effective THz systems with a small footprint.
研究不足
The system's update rate and bandwidth are inversely related; higher update rates result in reduced bandwidth.
1:Experimental Design and Method Selection:
The experiment employs a static fibre delay in combination with a fast sweeping laser source for phase modulation.
2:Sample Selection and Data Sources:
The setup includes two laser sources, a static delay, optical amplifiers, transmitter (Tx), receiver (Rx), and a THz-path established by two off-axis parabolic mirrors.
3:List of Experimental Equipment and Materials:
Finisar? WaveSource? laser, optical amplifiers (EDFA), transmitter (Tx), receiver (Rx), off-axis parabolic mirrors, data acquisition unit (DAQ).
4:Experimental Procedures and Operational Workflow:
The received signal is amplified (TIA) and digitized by the DAQ together with the sample- and cycling trigger of the WaveSource?.
5:Data Analysis Methods:
The detected signal is intrinsically phase-modulated with an offset frequency, which can be used with lock-in technique to acquire amplitude and phase information.
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