We are delighted to enhance support to our research and OEM customers in Germany, Austria, and Switzerland with a new distribution partner, SphereOptics GmbH, and a

David Creasey meets with Electro Optics’ Jessica Rowbury in the June 2017 issue and summarizes the history of Wasatch Photonics, from its beginnings in the

In the June 2017 issue of Spectroscopy, David Creasey joins Shan Yang and Ozan Akkus in writing a side by side comparison of 1064 nm and

Compact spectroscopy continues to conquer ever more challenging applications. In the May 2018 issue of The Analytical Scientist, Wasatch Photonics’ Cicely Rathmell and Dr. David Creasey

Gas analysis systems used for mud logging in the oil and gas industry provide information that is critical to optimize the drilling process and for

The accumulation of microplastic particles in our oceans, lakes, and drinking water has gained increasing attention in recent years as scientists realize how widespread this

Smaller and more sensitive Raman instruments are facilitating new solutions for food analysis, providing rapid, on-site authentication and quality testing throughout the food chain. In

Surface-enhanced Raman spectroscopy (SERS) has the potential to enable new point-of-need measurements for use in healthcare, forensics, homeland security and food safety due to its

Wasatch Photonics partnered with CEST and Vienna University of Technology in Austria to support a novel in situ study of corrosion processes using Raman spectroscopy. The study

As of June 2022, Wasatch Photonics is proud to be an accepted member of the CWMD Consortium (Countering Weapons of Mass Destruction), an organization focused

Trends toward smaller spectrometers are pushing the boundaries of conventional diffraction gratings for increased performance. In this Photonics Spectra article, Advancements in Diffraction Gratings Aim to

Our annual article in Spectroscopy‘s June Raman supplement for 2024 shows how affordable, reliable Raman instruments can be combined with intuitive AI-driven software to achieve noninvasive