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TC5 LAB датащи(PDF) 3 Page - Wavelength Electronics, Inc. |
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TC5 LAB датащи(HTML) 3 Page - Wavelength Electronics, Inc. |
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3 / 5 page ![]() Case Study CS-LDTC07 Rev. A Page 3 © 2020 • Sales & Technical Support: (406) 587-4910 • email: sales@teamWavelength.com • web: www.teamWavelength.com spacing of the harmonic comb is too great for the bandwidth of the detector. Researchers at Harvard University2 use a multi-heterodyne beating experiment between two QCLs. One QCL is in the harmonic comb state, and the other QCL is in the fundamental comb state as the reference comb device. At Northwestern University, a reference Fabry-Pérot (FP) QCL is used as a reference comb in the fundamental comb state to verify the THz comb operation. The FP QCL is operated at a current of 1.52 A to establish the fundamental state. The DFB QCL is operated at a current of 1.45 A in the multimode harmonic state. Both are measured using a Fourier Transform Infrared (FTIR) Spectrometer. These settings can be seen in Figure 4. Figure 4. Multi-heterodyne characterizations based on the DFB and FP QCL combs. (a) Lasing spectrum of the FP and DFB combs recorded with the FTIR. Multi- heterodyne beating of the FP comb at 1.52 A and the DFB comb at 1.45 A (b), and the DFB comb at 1.55 A (c). Total acquisition time: 100 ms1 The heterodyne spacing is determined by the frequency difference between mode spacing of the DFB harmonic comb and the multiple of FP mode spacing.1 This experiment confirms the harmonic comb generation of the DFB QCL. The DFB QCL, with dual wavelength operation, enables the second-order difference-frequency generation that can transfer the mid-IR comb into the THz range. RESULTS With this innovative technique, the researchers have achieved a THz harmonic frequency comb at 3.0 THz at room temperature with a range of 2.2 to 3.3 THz. All testing was performed on a thermoelectric cooler (TEC) stage precisely controlled to room temperature (293 K). Figure 5 shows the THz frequency results at different currents of the DFB QCL harmonic comb. Figure 5. On-chip generation of THz frequency comb from a mid-IR QCL. Lasing THz spectra of the DFB QCL comb evolving at different currents from 1.20 to 1.55 A at room temperature continuous wave operation1 The frequency spacing between modes, in Figure 5, is 157 GHz for currents from 1.3 - 1.5 A and 245 GHz for currents above 1.5 A. This corresponds to 14 FSR and 22 FSR mode spacings. Because the two mid-IR pumping sources are simultaneously generated from the same QCL |
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