Frequency and amplitude stabilized terahertz quantum cascade laser as local oscillator

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Abstract

We demonstrate an experimental scheme to simultaneously stabilize the frequency and amplitude of a 3.5 THz third-order distributed feedback quantum cascade laser as a local oscillator. The frequency stabilization has been realized using a methanol absorption line, a power detector, and a proportional-integral-derivative (PID) loop. The amplitude stabilization of the incident power has been achieved using a swing-arm voice coil actuator as a fast optical attenuator, using the direct detection output of a superconducting mixer in combination with a 2nd PID loop. Improved Allan variance times of the entire receiver, as well as the heterodyne molecular spectra, are demonstrated. © 2012 American Institute of Physics.

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Ren, Y., Hayton, D. J., Hovenier, J. N., Cui, M., Gao, J. R., Klapwijk, T. M., … Reno, J. L. (2012). Frequency and amplitude stabilized terahertz quantum cascade laser as local oscillator. Applied Physics Letters, 101(10). https://doi.org/10.1063/1.4751247

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