Specialised Imaging: Plasma Research Benefits from Ultra Fast UV Imaging

13 Aug 2015
Chelsie Phillips
Temporary Editorial Assistant

Industry news

The Leibniz Institute for Plasma Science and Technology eV is using an optimized version of Specialised Imaging’s SIM Framing Camera to make ultra fast UV measurements of the mechanism of plasma being used to modify the electrical properties of polymer films.

Using an optimised UV optical module and UV ICCD enables the SIM camera to optimally operate in the 200-600nm region allowing scientists to study the mechanism of plasma breakdown and streamer propagation within the liquid volume, how they interact and produce modifications at the surface and within the bulk structure of polymer films.

Dr Camelia Miron, postdoctoral researcher at INP Griefswald commented "Due to the often limited accessibility of active (laser) diagnostics and the complicated plasma geometries (submerged in liquid), fast framing camera systems are often used as diagnostic tools to investigate plasmas in liquids. Using a SIM fast framing camera system for the optical diagnosis has enabled us to undertake fundamental research concerning the dynamics of discharge development in liquids".

Dr Miron added "Nanosecond voltage pulses are expected to be responsible for very fast, primarily non-thermal plasma formation in liquids which are furthermore associated with strong electric fields and steep pressure gradients. The streamer propagation velocity was shown to reach speeds of 5000 km s-1. When capturing images from any high speed event the need for additional lighting is always an issue to ensure that the lens can be set to cover an adequate depth of field and that sufficiently short exposure times can be programmed to arrest movement. Our acquisition of a SIM camera and SI-LUX 640 laser illumination system from Specialised Imaging was important for obtaining additional valuable information about the plasma breakdown mechanism and select the optimal parameters for polymer films and membranes treatment by plasma in liquids".

Through continuous innovative technical development the SIM framing camera range has established itself as the leading ultra- high speed camera for industrial and academic research groups around the world. Capable of capturing images at 1,000,000,000 frames per second, with gating down to 3ns, the SIM framing camera takes the capture of images for accurate, high-speed spatial analysis of fast transient events to a new level.

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UV-Visible SpectroscopyUltraviolet-visible (UV-Vis) spectrophotometers are used to measure the interaction of UV and visible light with a sample, including transmission, reflectance & absorbance. The two major instrument classes are single-beam or double-beam spectrophotometers. More specialized equipment includes colorimeters, spectroradiometers and refractometers. Portable and microvolume spectrophotometers are also available. For the modular spectroscopy lab, explore a range of light sources for combination with a spectrograph/spectrometer and optics. Find the best UV-Vis spectroscopy products in our peer-reviewed product directory: compare products, check customer reviews and receive pricing direct from manufacturers.Mechanical TestingMechanical testing explores the elastic and inelastic nature of a material when force is applied. A mechanical test shows whether a material is suitable for its intended application by measuring hardness, tensile strength, elongation, elasticity, and fatigue limit.Polymeric MaterialsPolymeric materials are widely used in industries ranging from biomedical devices to packaging and electronics. Research into these materials focuses on their properties, including strength, flexibility, and degradation. Advances in polymer science have enabled the development of more sustainable and high-performance materials. Explore the best polymeric material products in our peer-reviewed product directory; compare products, check reviews, and get pricing directly from manufacturers.ImagingImaging techniques are essential for obtaining visual representations of samples to understand structures, processes, and function in biological, chemical, and physical research. These tools range from traditional light microscopy to advanced imaging modalities like MRI and electron microscopy, providing researchers with valuable data for diagnostics, drug discovery, and material analysis. Explore imaging solutions in our peer-reviewed product directory to compare products, check reviews, and get pricing directly from manufacturers.Polymer FilmsPlasmaUVUltraviolet (UV) light is used in a variety of applications, including disinfection, spectrophotometry, and molecular biology. UV light can damage DNA, making it a powerful tool in sterilization and in studies of mutagenesis and gene repair. Explore UV-related products in our peer-reviewed product directory; compare products, check reviews, and get pricing directly from manufacturers.