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Showing posts with the label chemical sensing

Hyperspectral imaging: defense technology transfers into commercial applications

Hyperspectral imaging, like many other of today's technologies, is moving into numerous commercial markets after developing and maturing in the defense sector. While still having a strong presence in defense applications, the technology is now used in chemical detection, food quality assurance and inspection, vegetation monitoring, and plant phenotyping, among others. For more than 20 years, advances in spectral imaging have been on display at SPIE Defense + Commercial Sensing (DCS). The applications and capabilities of the technology have grown along with the conferences and exhibition at SPIE DCS. The ability to see more than what is visible to the human eye has always been one of the goals of optical engineers. With hyperspectral imaging they have been able to achieve just that. By accessing the entire electromagnetic spectrum, the sensors are able to image a specific wavelength range, or spectral band, and combine images of multiple bands into one 3D scene. Through...

Hot technologies at CES are powered by photonics

The Consumer Electronics Show (CES), which kicks off each year in Las Vegas and did so again last week, is a mega-event that identifies trends and gives some of the biggest gurus in technology a platform. The mainstream media covers it all with gusto. Of course the tech media is all over it too, with everything from product specs to analysis of tweets to see who the biggest “influencers” are . The good thing about CES is that there is something for everyone – but that’s also the bad thing. Significant developments or important new products might just be overshadowed by something with a bigger flash, but possibly not much substance. And there’s also the paradox of constant monitoring. As Junko Yoshida says in EE Times : “While consumers see the Orwellian implications of constant monitoring, they can’t resist the temptations to see or hear things that wouldn’t be on the radar without embedded cameras or microphones.” Of course photonics plays a big role in just about everything toute...

What's in a name: light and photonics

Light: you need it, you use it. But do most people know how much we use it -- and why should they? Helping to tell that story, the 2 posters at right anticipating an International Year of Light (IYL) celebration in 2015 were among more than 30 on display in the Photonics for a Better World pavilion during the exhibition last month at SPIE Optics + Photonics in San Diego. The posters were designed by supporters of a proposal before the United Nations to establish the IYL to raise awareness about the initiative. Yes, that’s right: a year especially set aside for the contemplation and celebration of light – and along the way, plenty of opportunity to talk about photonics. Hardly a household word now, "photonics" refers to science and technology involving the manipulation of photons -- light. One of the goals of an International Year of Light is, essentially, to make “photonics” a household word, in the same way that “electricity” and “chemistry” are. This...

Manipulating nanoscale ‘rainbows’ for solar cells and TV screens

The manipulation of light is a core photonics activity performed in numerous ways for numerous practical effects. For example, consider the design of lasers for purposes as diverse as repairing a retina to restore vision and downloading a movie over the internet onto a tablet for viewing. Anatoly Zayats and his team at King's College London have created artificial "rainbows" at the nanoscale. The technology has potential for use in solar energy generation, optical computing, and more. Amazing as those human-scale applications are, imagine manipulating multiple colors of light on a structure about 100 times smaller than the width of a human hair -- and then applying that for the very practical effects of sensing toxins, improving solar cell efficiency, enabling optical circuits for tele- and data communications, and improving flat-screen display. A team of researchers led by Anatoly Zayats in the Biophysics and Nanotechnology Group at King’s College Lond...