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A Complete and Linear Physical Characterization Methodology for the Arbiter PUF Family., , , , , , , , and . IACR Cryptology ePrint Archive, (2015)Strong Machine Learning Attack Against PUFs with No Mathematical Model., , , and . CHES, volume 9813 of Lecture Notes in Computer Science, page 391-411. Springer, (2016)MultiFlow: Enhancing IP Multicast over IEEE 802.11 WLAN., and . Wireless Days, page 1-8. IEEE, (2013)Blockchain-enabled Cryptographically-secure Hardware Obfuscation., , , and . IACR Cryptology ePrint Archive, (2019)Physical Inspection & Attacks: New Frontier in Hardware Security., , , , , , and . IVSW, page 93-102. IEEE, (2018)PAC learning of arbiter PUFs., , and . J. Cryptographic Engineering, 6 (3): 249-258 (2016)Laser Fault Attack on Physically Unclonable Functions., , , , and . FDTC, page 85-96. IEEE Computer Society, (2015)On the Power of Optical Contactless Probing: Attacking Bitstream Encryption of FPGAs., , , and . ACM Conference on Computer and Communications Security, page 1661-1674. ACM, (2017)Physical Characterization of Arbiter PUFs., , , , , , , and . CHES, volume 8731 of Lecture Notes in Computer Science, page 493-509. Springer, (2014)No Place to Hide: Contactless Probing of Secret Data on FPGAs., , , and . CHES, volume 9813 of Lecture Notes in Computer Science, page 147-167. Springer, (2016)