Where to Buy Periodically Poled Nonlinear Crystals
Periodically polled nonlinear crystals can be used for quasi-phase-matched nonlinear processes where phase matching would normally not be possible based on the original non-poled material. Through an appropriate choice of poling period, basically any nonlinear process can be quasi-phase-matched.
E | See also our encyclopedia article on quasi-phase matching! Related articles: periodic poling, nonlinear frequency conversion, phase matching, quasi-phase matching |
Related products: nonlinear crystal materials
Related product categories: materials, various devices
8 suppliers for periodically poled nonlinear crystals are listed in the RP Photonics Buyer's Guide. Both manufacturers and distributors can be registered.
Suppliers with Ad Package | |
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Company | Product Description |
Unit A7 – The Premier Centre Premier Way Romsey, Hampshire SO51 9DG United Kingdom | Periodically poled lithium niobate: high efficiency nonlinear conversion crystals available off-the-shelf for SHG, OPO, DFG and SFG interactions. Crystals suitable for generation from visible to mid-infrared wavelengths. |
F4, No. 2, Technology Rd. V Hsinchu Science Park, Hsinchu 300 Taiwan Quality: ISO 9001:2015 | HC Photonics (HCP) provides various high efficiency nonlinear crystals to enable full-spectrum applications, including periodically poled lithium niobate (LiNbO3)/PPLN and periodically poled lithium tantalate (LiTaO3)/PPLT. Features and service: - More than 250 commercial off-the-shelf PPMgO:LN bulk crystals for wavelength conversions: QPM pattern: single, multiple, and fan-out; configuration: SHG, SFG, DFG, OPG, OPO, OPA; wavelength range: UV (355 nm) to mid-infrared (5000 nm) - Custom-made solutions: QPM period: 2–1000 microns; QPM pattern: sngle, multiple, fan-out, chirped, cascade, 2D; dimension: length 0.3–80 mm, width 0.1–40 mm, thickness 0.2–5 mm); configuration: SHG, SFG, DFG, OPG, OPO, OPA, THG, SHG+SFG; wavelength range: UV (355 nm) to mid-infrared (5000 nm) and THz; material: PPMgO:LN or PPMgO:LT - PPLN waveguides: excellent performance, i.e. >50% overall efficiency. Fibered module >2 W at 780 nm ( 1560 nm SHG) is off-the-shelf. Other wavelengths are also available or could be designed upon request. |
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All Suppliers | |
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From Asia: | |
F4, No. 2, Technology Rd. V Hsinchu Science Park, Hsinchu 300 Taiwan Quality: ISO 9001:2015 | HC Photonics (HCP) provides various high efficiency nonlinear crystals to enable full-spectrum applications, including periodically poled lithium niobate (LiNbO3)/PPLN and periodically poled lithium tantalate (LiTaO3)/PPLT. Features and service: - More than 250 commercial off-the-shelf PPMgO:LN bulk crystals for wavelength conversions: QPM pattern: single, multiple, and fan-out; configuration: SHG, SFG, DFG, OPG, OPO, OPA; wavelength range: UV (355 nm) to mid-infrared (5000 nm) - Custom-made solutions: QPM period: 2–1000 microns; QPM pattern: sngle, multiple, fan-out, chirped, cascade, 2D; dimension: length 0.3–80 mm, width 0.1–40 mm, thickness 0.2–5 mm); configuration: SHG, SFG, DFG, OPG, OPO, OPA, THG, SHG+SFG; wavelength range: UV (355 nm) to mid-infrared (5000 nm) and THz; material: PPMgO:LN or PPMgO:LT - PPLN waveguides: excellent performance, i.e. >50% overall efficiency. Fibered module >2 W at 780 nm ( 1560 nm SHG) is off-the-shelf. Other wavelengths are also available or could be designed upon request. |
Outside Asia: | |
2310 University Way #1–1 Bozeman, MT 59715 United States | |
Bertha-von-Suttner-Str. 5 37085 Göttingen Germany | |
Unit A7 – The Premier Centre Premier Way Romsey, Hampshire SO51 9DG United Kingdom | Periodically poled lithium niobate: high efficiency nonlinear conversion crystals available off-the-shelf for SHG, OPO, DFG and SFG interactions. Crystals suitable for generation from visible to mid-infrared wavelengths. |
64 Harding Avenue Dover, NJ 07801 United States | |
Parc Club Orsay Universite 29 rue Jean Rostand 91893 Orsay France | |
2724 Sawbury Blvd. Columbus, OH 43235 United States | |
C/O Albanova Roslagstullsbacken 21 106 91 Stockholm Sweden | |
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