Fabrication and characterization of high-damage resistance Zn-diffused MgO: PPLN ridge waveguides

YUAN J, DU J, LIU J, et al. Arayed-waveguide-grating based on proton exchange and etching combined fabrication over bulk lithium-niobate substrate[C]//2022 IEEE 24th International Workshop on Multimedia Signal Processing (MMSP), September 26–28, 2022, Shanghai, China. New York: IEEE, 2022: 1–4.

Google Scholar 

NIU Y, YAN X, CHEN J, et al. Research progress on periodically poled lithium niobate for nonlinear frequency conversion[J]. Infrared physics & technology, 2022:104243.

TAKUSHI K, TAKESHI U, SHIMPI S, et al. Over-30-dB gain and 1-dB noise figure phase-sensitive amplification using a pump-combiner-integrated fiber I/O PPLN module[J]. Optics express, 2021, 29(18): 28824–28834.

Article  Google Scholar 

CHEN Z Y, CHENG J X, CHEN H X, et al. High performance Zn diffused Mg doped LN crystal ridge waveguide devices[J]. Journal of synthetic crystals, 2022, 51(11): 1823.

Google Scholar 

LEWIS G C, SAM A B, ALAN C G, et al. CW demonstration of SHG spectral narrowing in a PPLN waveguide generating 2.5 W at 780 nm[J]. Optics express, 2020, 28(15/20): 21382.

Google Scholar 

BERRY S A, CARPENTER L G, GRAY A C, et al. Zn-indiffused diced ridge waveguides in MgO: PPLN generating 1 watt 780 nm SHG at 70% efficiency[J]. OSA continuum, 2019, 2(12): 3456–3464.

Article  Google Scholar 

LU M, CORIN B E G, KATIA G, et al. High conversion efficiency single-pass second harmonic generation in a zinc-diffused periodically poled lithium niobate wave-guide[J]. Optics express, 2005, 13(13): 4862.

Article  ADS  Google Scholar 

ALAN C G, SAM A B, LEWIS G C, et al. Upconversion detection of 1.25 Gb/s mid-infrared telecommunications using a silicon avalanche photodiode[J]. Optics express, 2020, 28(23/9): 34279.

Google Scholar 

ALAN C G, JONATHAN R C W, LEWIS G C, et al. Zinc-indiffused MgO: PPLN waveguides for blue/UV generation via VECSEL pumping[J]. Applied optics, 2020, 59(16/1): 4921.

Google Scholar 

ALAN C G, SAM A B, LEWIS G C, et al. Investigation of PPLN waveguide uniformity via second harmonic generation spectra[J]. IEEE photonics technology letters, 2019, 32(1): 1041–1135.

Google Scholar 

CARPENTER L G, BERRY S A, BANNERMAN R H S, et al. ZnO indiffused MgO: PPLN ridge wave-guides[J]. Optics express, 2019, 27(17): 24538–24544.

Article  ADS  Google Scholar 

GRAY A C, CARPENTER L G, BERRY S A, et al. Development of periodically poled lithium niobate zinc-indiffused ridge waveguides at blue wave-lengths[C]//2019 Conference on Lasers and Electro-Optics Europe & European Quantum Electronics Conference (CLEO/Europe-EQEC), June 23–27, 2019, Munich, Germany. New York: IEEE, 201: 1–1.

CARPENTER L G, BERRY S A, GAWITH C. Ductile dicing of LiNbO3 ridge waveguide facets to achieve 0.29 nm surface roughness in single process step[J]. Electronics letters, 2017, 53(25): 1672–1674.

Article  ADS  Google Scholar 

PECHEUR V, PORTE H, HAUDEN J, et al. Watt-level SHG in undoped high step-index PPLN ridge wave-guides[J]. OSA continuum, 2021, 4(5): 1404–1414.

Article  Google Scholar 

SHANTANU P, BIJOY K D, WOLFGANG S. Photorefractive damage resistance in Ti: PPLN waveguides with ridge geometry[J]. Applied physics B, 2015, 120(4): 737–749.

Article  Google Scholar 

SUNTSOV S, RUTER C E, BRUSKE D, et al. Watt-level 775 nm SHG with 70% conversion efficiency and 97% pump depletion in annealed/reverse proton exchanged diced PPLN ridge waveguides[J]. Optics express, 2021, 29(8): 11386–11393.

Article  ADS  Google Scholar 

留言 (0)

沒有登入
gif