Scientific Research

Our products offer innovative optical sensing solutions that enable new measurement, monitoring, and optical investigation possibilities for many different industries and research areas.
EXPERIENCE
Speed

Achieve unmatched acquisition rates across a wide optical bandwidth capturing every detail.

TRANSFORM
Workflows
Optimize your processes with real-time measurements, ensuring data is captured exactly when it matters the most.
INNOVATE
Future

Experience the future of MIR-spectroscopy with unparalleled performance and transformative insights at your fingertips.

News

Infrared upconversion hyperspectral imaging using NLIR technology as in Optics Letters, 2015

Infrared upconversion hyperspectral imaging

Louis M. Kehlet et al., Optics Letters 40, pp. 938 – 941 (2015)
More information
Low-noise mid-IR upconversion detector for improved IR-degenerate four-wave mixing gas sensing using NLIR technology as in Optics Letters, 2014

Low-noise mid-IR upconversion detector for improved IR-degenerate four-wave mixing gas sensing

Lasse Høgstedt et al., Optics Letters 39, pp. 5321 – 5324 (2014)
More information
Non-collinear upconversion of infrared light using NLIR technology as in Optics Express, 2014

Non-collinear upconversion of infrared light

Christian Pedersen et al., Optics Express 22, pp. 28027 – 28036 (2014)
More information
High-resolution mid-IR spectrometer based on frequency upconversion using NLIR tehnology as in Optics Letters, 2012

High-resolution mid-IR spectrometer based on frequency upconversion

Qi Hu et al., Optics Letters 37, pp. 5232 – 5235 (2012)
More information
Room-temperature mid-infrared single-photon spectral imaging using NLIR technology as in Nature Photonics, 2012

Room-temperature mid-infrared single-photon spectral imaging

Jeppe S. Dam et al., Nature Photonics 6, pp. 788 – 793 (2012)
More information

News

Infrared upconversion hyperspectral imaging using NLIR technology as in Optics Letters, 2015

Infrared upconversion hyperspectral imaging

Louis M. Kehlet et al., Optics Letters 40, pp. 938 – 941 (2015)
More information
Low-noise mid-IR upconversion detector for improved IR-degenerate four-wave mixing gas sensing using NLIR technology as in Optics Letters, 2014

Low-noise mid-IR upconversion detector for improved IR-degenerate four-wave mixing gas sensing

Lasse Høgstedt et al., Optics Letters 39, pp. 5321 – 5324 (2014)
More information
Non-collinear upconversion of infrared light using NLIR technology as in Optics Express, 2014

Non-collinear upconversion of infrared light

Christian Pedersen et al., Optics Express 22, pp. 28027 – 28036 (2014)
More information
High-resolution mid-IR spectrometer based on frequency upconversion using NLIR tehnology as in Optics Letters, 2012

High-resolution mid-IR spectrometer based on frequency upconversion

Qi Hu et al., Optics Letters 37, pp. 5232 – 5235 (2012)
More information
Room-temperature mid-infrared single-photon spectral imaging using NLIR technology as in Nature Photonics, 2012

Room-temperature mid-infrared single-photon spectral imaging

Jeppe S. Dam et al., Nature Photonics 6, pp. 788 – 793 (2012)
More information

Stay up-to-date

Sign up to our newsletter to stay up to date with the latest NLIR news!

RD engineer interested in the latest mid-infrared spectrometer news