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Preparatory Division String Camp, June 20-24, Ages 6-9 and 9-12. Registration deadline is May 20th. Preparatory Division, Tanner Dance and Youth Theatre Arts Passport, June 27 - July 1, Create an original performance work to be presented at the Tanner Dance Building. Preparatory Division International Piano Festival, July 26 - July 29, Musicianship, ukulele, and choir classes. University of Utah, School of Music.

Home in Their Eyes: Images and Stories of Home by Residents in Rural China, Friday, March 25 – Thursday, June 2, 2016, J. Willard Marriott Library 3rd Floor

Salt Dance Fest 2016 brings together internationally renowned dance artists and dance makers Jeanine Durning, Alex Ketley and Jennifer Nugent, along with esteemed SLC dance artists Daniel Charon, Molly Heller and Stephen Koester for two weeks of moving, collaborating, dance making and the lively exchange of ideas, June 6-17, 2016.

Summer Chamber Music Workshop, Matt Zalkind, June 26 - 30, 2016, Hasse Borup, Director, Open for serious string and piano players, age 12 - 26,  School of Music, University of Utah

University of Utah Department of Ballet Summer Intensive, June 20 - July 15, 2016. Join us for an exciting four-week ballet intensive with internationally recognized faculty and guest artists.

Performance Calendar of 2015 - 2016 Season, Department of Ballet, University of Utah

Performance Calendar of 2015 - 2016 Season, Department of Modern Dance, University of Utah

Natural History Museum of Utah 2015 Lecture Series

College of Fine Arts, University of Utah

Computing at the Speed of Light

May 18, 2015 – University of Utah engineers have taken a step forward in creating the next generation of computers and mobile devices capable of speeds millions of times faster than current machines.

The Utah engineers have developed an ultracompact beamsplitter — the smallest on record — for dividing light waves into two separate channels of information. The device brings researchers closer to producing silicon photonic chips that compute and shuttle data with light instead of electrons. Electrical and computer engineering associate professor Rajesh Menon and colleagues describe their invention today in the journal Nature Photonics.

Silicon photonics could significantly increase the power and speed of machines such as supercomputers, data center servers and the specialized computers that direct autonomous cars and drones with collision detection. Eventually, the technology could reach home computers and mobile devices and improve applications from gaming to video streaming.

To help do that, the U engineers created a much smaller form of a polarization beamsplitter (which looks somewhat like a barcode) on top of a silicon chip that can split guided incoming light into its two components. Before, such a beamsplitter was over 100 by 100 microns. Thanks to a new algorithm for designing the splitter, Menon’s team has shrunk it to 2.4 by 2.4 microns, or one-fiftieth the width of a human hair and close to the limit of what is physically possible.

More Coverage:

Link 1 (News Release from the University of Utah) (The news release has more details about this breakthrough.)  

Link 2 (Mashable)

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