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1.
Opt Lett ; 41(18): 4293-6, 2016 Sep 15.
Article in English | MEDLINE | ID: mdl-27628380

ABSTRACT

In this work, the generation of dual optical frequency combs based on gain-switching and optical injection locking is experimentally examined. The study reveals that an effective process of optical injection can lead to optimized RF combs in terms of span and signal-to-noise ratio. The system also minimizes the overlap of lines and reduces the number of optical components involved, eliminating the need for any external modulator (electro-optic, acousto-optic). The validation of the system was performed as a dual-comb spectrometer, which allowed for determination of the absorption and dispersion profiles of the molecular transition of H13CN at 1538.523 nm.

2.
Opt Express ; 24(13): 14986-94, 2016 Jun 27.
Article in English | MEDLINE | ID: mdl-27410649

ABSTRACT

In this paper, a new approach to dual comb generation based on well-known optical techniques (Gain-Switching and Optical Injection Locking) is presented. The architecture can be implemented using virtually every kind of continuous-wave semiconductor laser source (DFB, VCSEL, QCL) and without the necessity of electro-optic modulators. This way, a frequency-agile and adaptive dual-comb architecture is provided with potential implementation capabilities from mid-infrared to near ultraviolet. With a RF comb comprising around 70 teeth, the system is validated in the 1.5 µm region measuring the absorption feature of H13CN at 1538.523 nm with a minimum integration time of 10 µs.

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