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New White Papers now available online


VIEW FOR FREE*


Freeform optics design for illumination applications LAMBDA RESEARCH CORPORATION


Freeform optical elements give optical designers new and exciting degrees of freedom when it comes to designing optics for illumination applications. These same freeform elements can also add a new layer of complexity to the design process due to added degrees of freedom.


Understanding the differences in high-power pulsed and CW damage BRL LASER DAMAGE


All of us who work with high power lasers have experienced laser damage, usually when we least wanted to. Sometimes just an unexpected flash of light means an optic needs to be replaced, but often the case is far worse where a single coating damage can lead to systemwide failure. Much of our work is certifying optics for pulsed laser systems in order to prevent this kind of catastrophic event. This whitepaper dicusses in scientific detail the laser damage caused by pulsed and CW high-power systems.


The rise of continuously variable filters DELTA OPTICAL THIN FILM


This whitepaper will discuss the rise of continously variable filters in mini-spectrometers. CVFs are able to replace multiple fixed wavelength filters with improved performance.


Application note: Differential optical absorption spectroscopy AVANTES


This whitepaper details the use of differential optical absorption spectroscopy (DOAS) for monitoring complex emission spectra easily and cost-effectively


Tips for Designing Manufacturable Lenses and Assemblies EDMUND OPTICS


A successful lens design succeeds not only in the creation of a working model but also in manufacturing, assembly, testing, and implementation. Occasionally, a lens may appear to succeed in conception but fail in one of the subsequent phases of manufacturing, assembly, or testing.


Polarised Raman Spectroscopy EDINBURGH INSTRUMENTS LTD


An introduction to the theory of polarised Raman spectroscopy and exploring the wealth of sample information that can be obtained using this technique.


Artery Targeted Photothrombosis to Better Model Human Stroke and Forelimb Impairment WAVELENGTH ELECTRONICS


Researchers have developed a new method to better model human stroke which uses artery-targeted photothrombosis.


www.electrooptics.com/whitepapers


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Electro Optics


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