On the Physical Security of Physically Unclonable Functions / by Shahin Tajik.
By: Tajik, Shahin., autor
Series: (Engineering (Springer-11647)); (T-Labs Series in Telecommunication Services, 2192-2810).Publisher: Cham : Springer International Publishing, 2019Description: 1 recurso en línea (XX, 79 páginas) : 36 ilustraciones, 24 ilustraciones a color.ISBN: 9783319758206.Subject: Seguridad informática
| Item type | Current library | Collection | Call number | Status | Date due | Barcode | Item holds | |
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LIBRO-E NO PRÉSTAMO
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Madrid Digital Acceso Electrónico (UEM) | Ciencias e Ingeniería | QA76.9.A25 T355 2019 (Browse shelf(Opens below)) | Acceso electrónico | eBooks24062809 |
Browsing Madrid Digital shelves, Shelving location: Acceso Electrónico (UEM) Close shelf browser (Hides shelf browser)
| QA76.9.A25 R694 2016 EB Introduction to Cyberdeception | QA76.9 .A25 S54 2016 EB Moving target defense for distributed systems | QA76.9 .A25 S749 2015 EB Detecting Peripheral-based Attacks on the Host Memory | QA76.9.A25 T355 2019 On the Physical Security of Physically Unclonable Functions | QA76.9.A25 T436 2018 EB Advance Compression and Watermarking Technique for Speech Signals | QA76.9.A25 T677 2017 EB Data Privacy : foundations, new developments and the big data challenge | QA76.9.A25 T73 2016 EB Homomorphic Signature Schemes : A Survey |
Introduction -- Background -- Experimental Setup -- Photonic Side-Channel Analysis -- Laser Fault Injection -- Optical Contactless Probing -- Conclusion.
This book investigates the susceptibility of intrinsic physically unclonable function (PUF) implementations on reconfigurable hardware to optical semi-invasive attacks from the chip backside. It explores different classes of optical attacks, particularly photonic emission analysis, laser fault injection, and optical contactless probing. By applying these techniques, the book demonstrates that the secrets generated by a PUF can be predicted, manipulated or directly probed without affecting the behavior of the PUF. It subsequently discusses the cost and feasibility of launching such attacks against the very latest hardware technologies in a real scenario. The author discusses why PUFs are not tamper-evident in their current configuration, and therefore, PUFs alone cannot raise the security level of key storage. The author then reviews the potential and already implemented countermeasures, which can remedy PUFs' security-related shortcomings and make them resistant to optical side-channel and optical fault attacks. Lastly, by making selected modifications to the functionality of an existing PUF architecture, the book presents a prototype tamper-evident sensor for detecting optical contactless probing attempts.
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