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This Week in Photonics: Deep Neuronal Imaging, 3D Holography, CQD LEDs for the IR Spectrum, and More (12/6/2018)

This Week in Photonics: Deep Neuronal Imaging, 3D Holography, CQD LEDs for the IR Spectrum, and More
Weekly newsletter highlighting breaking news, technology developments and product releases in the photonics industry.
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Thursday, December 6, 2018
       
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Probe for Deep Neuronal Imaging Built Using Holographic Techniques
Probe for Deep Neuronal Imaging Built Using Holographic Techniques
Using a multimode optical fiber as thin as a human hair, scientists at the Leibniz-Institute of Photonic Technology have observed at high resolution the neuronal structures inside deep brain areas of living mice. The researchers drew on holographic methods for controlling light.
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High-Performance Computers Could Advance Application of 3D Holography
High-Performance Computers Could Advance Application of 3D Holography
Researchers at Chiba University are developing a computer that can project high-quality 3D electroholography as a video — a project that they began about 25 years ago. The team has been working to increase the speed of the holographic projections by developing new high-performance hardware.
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Colloidal Quantum Dot, IR LEDs Are Highly Efficient
Colloidal Quantum Dot, IR LEDs Are Highly Efficient
A composite material that is a strong light emitter as well as an efficient charge conductor — colloidal quantum dot (CQD) LEDs — has been developed by a team at the Institute of Photonic Sciences (ICFO). The nanocomposite system comprising IR CQDs is low-cost and can be integrated with CMOS, in addition to being highly efficient.
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Gas-Jet Lens Supports Refractive Optics in XUV Domain
Gas-Jet Lens Supports Refractive Optics in XUV Domain
A new refractive lens developed by scientists at the Max Born Institute (MBI) uses a jet of atoms to focus extreme UV (XUV) beams. The atom jet is used in place of glass, which is nontransparent in the XUV spectral region.
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Photonic Sensors Show Resilience Against Large Doses of Radiation
Photonic Sensors Show Resilience Against Large Doses of Radiation
Researchers at the National Institute of Standards and Technology (NIST) have identified a class of silicon photonic sensors that could be effective in high-radiation environments because of their ability to withstand high radiation doses.
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More Headlines
 
 

Teledyne Image Sensors Power Cameras Aboard NASA’s InSight Mission to Mars  Read Article 

2019 Prism Award Finalists Announced  Read Article 

High-Dimensional Optical Cluster States Could Enable One-Way Quantum Computing  Read Article 

WaveOptics Signs Deal with Google Supplier Goertek  Read Article 

Multiphoton Imaging Is Used to Measure Muscle Weakness  Read Article 

 
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Industry Events
 
 
Photonics West 2019
Photonics West 2019
February 2-7, 2019 - The Moscone Center - San Francisco United States
SPIE Photonics West is the world's largest photonics technologies event, consisting of three conferences - BIOS, LASE, and OPTO - and exhibitions. Photonics West 2019 will give you access to cutting-edge research through its 5,000-plus presentations and courses, its two world-class exhibitions featuring 1,300 companies, a robust industry program, and plenty of networking opportunities.
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Photonics Media is currently seeking technical feature articles on a variety of topics for publication in our magazines (Photonics Spectra, BioPhotonics, and EuroPhotonics). Please submit an informal 100-word abstract to [email protected], or use our online submission form.

 
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