Monday, February 16, 2015

Sanjukta Bhanja-- Featured Engineering at EEWeb (week of 2/16/15)

Sanjukta Bhanja was featured  Engineer of the week of 2/16/15. To see the interview visit 




Tuesday, January 6, 2015

Team "Secret" comprising of Jayita Das and Kevin Scott is the first-place winner of NYU organized Cybersecurity event "The Embedded Security Challenge"

The Embedded Security Challenge deals with the security and trustworthiness of hardware. This year, students were challenged to focus on emerging technologies and materials and to prove to us why they are valuable and secure. Representatives of 10 student teams were invited to the finals, where they presented their research to judges. All three winners were from Florida:

1st place: SECurity Researchers in Emerging Technology (SECRET), University of South Florida—Jayita Das and Kevin P. Scott


USF teams receive grants to develop socially beneficial products

Sanjukta Bhanja's I-Corps Project was featured in http://www.83degreesmedia.com

Read more--

http://www.83degreesmedia.com/innovationnews/NSF120214.aspx

Jayita Das Receives Grace Hopper Celebration in Computing Travel Award

http://www.eng.usf.edu/about/news/07-16-14%20Jayita%20Das%20Receives%20Grace%20Hopper%20Award.pdf

Javier Pulecio’s Research Featured on the Cover of Applied Physics Letters

http://www.eng.usf.edu/pdf/09-30-14%20Javier%20Pulecio.pdf
\A recently published paper, Symmetry breaking of magnetic vortices before annihilation, by Javier Pulecio, et. al., PhD ’10, appeared on the cover of the September 29, 2014 issue of Applied Physics Letters, Volume 105, Issue 13. 

Field-Coupled Nanocomputing: Paradigms, Progress, and Perspectives

Field-Coupled Nanocomputing: Paradigms, Progress, and Perspectives (Lecture Notes in Computer Science / Theoretical Computer Science and General Issues) Paperback – June 30, 2014

MRAM PUF: A Novel Geometry Based Magnetic PUF With Integrated CMOS

"MRAM PUF: A Novel Geometry Based Magnetic PUF With Integrated CMOS", Jayita Das, Kevin Scott, Srinath Rajaram, Drew Burgett, Sanjukta Bhanja, Accepted in IEEE Transactions on Nanotechnology, 2015.

Abstract—This manuscript addresses a novel MRAM-based Physically Unclonable Function (PUF). The PUF responses are generated using the unique energy-tilt, which is an outcome of the random geometric variations in the MRAM cells. We have verified relevant attributes of this PUF through extensive magnetic simulations and in-house fabrication results. Our fabricated PUF cells generate entropy as high as 0.99, which is comparable to most of its competitors. To our knowledge, the footprint of the PUF cells is also lower than the majority of silicon PUFs. Also, the authentication control algorithm for this PUF requires very low additional control-steps. We conclude our discussion of this novel PUF with a study of authentication overhead and protocols required by the PUF system in terms of area, power and delay.