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We present a widely tunable dual-wavelength optical parametric oscillator (OPO), exploiting degenerate four-wave mixing within both fundamental transverse modes of a single silicon nitride waveguide within a single cavity. Independent dispersive tuning of two idler outputs was realized through a tunable birefringence within the cavity. Benefiting from the broadband four-wave mixing gain of the fundamental TE and TM modes in the waveguide, as well as from the orthogonally polarized and delayed pumping scheme, the OPO, pumped with a fiber laser at 1.03 µm wavelength, generated two independently tunable idler pulses with arbitrary frequency spacing ranging from zero up to 65 THz in the wavelength region from 1.11 to 1.46 µm. This believed to be novel dual-wavelength waveguide-based OPO paves the way toward various multi-wavelength applications.
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http://dx.doi.org/10.1364/OE.550003 | DOI Listing |
PLoS One
September 2025
School of Physics and Astronomy, Yunnan University, Kunming, China.
Using tunable in-band laser diode (LD) pumping (791.1-798.2 nm), an orthogonally polarized dual-wavelength (OPDW) Nd:LaMgAl11O19/Nd:SrAl12O19 (Nd:LMA/Nd:SA) operation at 1297 nm and 1306 nm for the 4F3/2 → 4I13/2 transition is demonstrated for the first time.
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February 2025
We present a widely tunable dual-wavelength optical parametric oscillator (OPO), exploiting degenerate four-wave mixing within both fundamental transverse modes of a single silicon nitride waveguide within a single cavity. Independent dispersive tuning of two idler outputs was realized through a tunable birefringence within the cavity. Benefiting from the broadband four-wave mixing gain of the fundamental TE and TM modes in the waveguide, as well as from the orthogonally polarized and delayed pumping scheme, the OPO, pumped with a fiber laser at 1.
View Article and Find Full Text PDFWe report ∼3.5 m watt-level continuous-wave (CW) and gain-switched all-fiber Er: ZBLAN lasers using multi-color dielectric fiber mirrors (DFMs). A section of 1 mol.
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April 2025
We propose and demonstrate what we believe to be a novel high-resolution spectroscopic technique based on the combination of a spectrally interleaved Brillouin optical frequency comb (OFC) and an optical spectrum analyzer (OSA). The Brillouin OFC is generated by the interaction of a dual-wavelength intracavity Brillouin laser, which is produced by using a step-tuned tunable laser source and an electro-optic I/Q modulator, via a cascaded four-wave mixing (FWM) process in a nonlinear optical fiber loop. The proposed spectroscopic technique is experimentally demonstrated with a fiber Bragg grating transmission.
View Article and Find Full Text PDFNanosecond square-wave pulses of color domain wall (CDW) and polarization color domain wall (PCDW) are realized in a nonlinear polarization rotation (NPR) fiber laser. CDW and PCDW can be flexibly switched by purely changing the polarization state in the cavity. The pulse width of PCDW can be tuned from 57 ns to 1013 ns smoothly.
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