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Fabrication of Nanoheight Channels Incorporating Surface Acoustic Wave Actuation via Lithium Niobate for Acoustic Nanofluidics
Published on: February 5, 2020
Efficient optical parametric amplification in the thin film lithium niobate waveguides
Yuanqiang Peng1, Shunxing Yang1, RuiHuan Wu2
1China Telecom Research Institute, Guangzhou, 510630, People's Republic of China.
Abstract:
Prominent platforms based on thin-film lithium niobate (TFLN) are superior integrated-photonics platforms for efficient optical parametric amplification (OPA), however, previously few studies have been systematically reported the gain-boosting performance of TFLN waveguides compared to bulk LN waveguides. Here, we optimize two TFLN waveguides with dispersion engineering for high-efficiency and ultra-broadband gain of OPA, then report comparative results about the efficient ultra-broadband OPA of TFLN waveguides in the case of low loss, optimized waveguide length and pump power. Note that the efficient ultra-broadband OPA of TFLN waveguides is represented by the peak gain (71.5 dB) covering a wavelength range of more than 160 nm. And the OPA characteristics of optimized TFLN waveguides are investigated, such as power gain coefficient of dB/cm, length gain coefficient of dB/W, and gain bandwidth. Potential of TFLN integrated-photonics platforms with efficient ultra-broadband OPA show no boundary.

