440
4 Hardware Trojans in Microcircuits
73. P. Rohatgi, Improved Techniques for Side-Channel Analysis, Cryptographic Engineering
(Springer, New York, NY, USA, 2009), pp. 381–406
74. C. Paar, J. Pelzl, B. Preneel, Understanding Cryptography: A Textbook for Students and
Practitioners (Springer-Verlag, New York, NY, USA, 2010)
75. F. Koeune, F.-X. Standaert, A tutorial on Physical Security and Side-Channel Attacks
Foundations of Security Analysis and Design III (Springer, Berlin, Germany, 2005),
pp. 78–108
76. P. Rohatgi, Electromagnetic Attacks and Countermeasures, Cryptographic Engineering
(Springer, Berlin, Germany, 2009), pp. 407–430
77. A. Schlosser, D. Nedospasov, J. Kramer, S. Orlic, J.-P. Seifert, Simple photonic emission
analysis of AES. J. Cryptogr. Eng. 3(1), 3–15 (2013)
78. D. Genkin, A. Shamir, E. Tromer, RSA key extraction via low-bandwidth acoustic cryptanalysis, Cryptology ePrint Archive, Rep. 2013/857 (2013)
79. H. Bar-El, H. Choukri, D. Naccache, M. Tunstall, C. Whelan, The sorcerer’s apprentice guide
to fault attacks. Proc. IEEE 94(2), 370–382 (2006)
80. B. Yang, K. Wu, R. Karri, Scan based side channel attack on dedicated hardware implementations of data encryption standard, in Proceedings of IEEE International Test Conference
(2004), pp. 339–344
81. J. Lee, M. Tehranipoor, C. Patel, J. Plusquellic, Securing designs against scan-based sidechannel attacks. IEEE Trans. Dependable Secure Comput. 4(4), 325–336 (2007)
82. M. Agrawal, S. Karmakar, D. Saha, D. Mukhopadhyay, Scan based side channel attacks
on stream ciphers and their counter-measures, in Proceedings of the INDOCRYPT (2008),
pp. 226–238
83. D. Merli, D. Schuster, F. Stumpf, G. Sigl, Side-Channel Analysis of PUFs and Fuzzy
Extractors, Trust and Trustworthy Computing (Springer, New York, NY, USA, 2011),
pp. 33–47
84. U. Ruhrmair et al., Power and timing side channels for PUFs and their efficient exploitation,
Cryptology ePrint Archive, Rep. 2013/851 (2013)
85. D. Karakoyunlu, B. Sunar, Differential template attacks on PUF enabled cryptographic
devices, in Proceedings of the International Workshop on Information Forensics and Security
(2010), https://doi.org/10.1109/WIFS.2010.5711445
86. A. Mahmoud, U. R hrmair, M. Majzoobi and F. Koushanfar. Combined modeling and side
channel attacks on strong PUFs, Cryptology ePrint Archivetx, Rep. 2013/632, 2013. [Online].
Available: http://eprint.iacr.org/
87. B. Kopf, D. Basin, Aninformation-theoretic model for adaptive side-channel attacks, in
Proceedings of the ACM Conference on Computer and Communications Security (2007),
pp. 286–296
88. P. Rakers, L. Connell, T. Collins, D. Russell, Secure contactless smartcard ASIC with DPA
protection. J. Solid-State Circu. 36(3), 559–565 (2001)
89. K. Tiri, M. Akmal, I. Verbauwhede, A dynamic and differential CMOS logic with signal
independent power consumption to withstand differential power analysis on smart cards, in
Proceedings of the European Solid-State Circuits Conference (2002), pp. 403–406
90. S. Moore, R. Anderson, R. Mullins, G. Taylor, J.J. Fournier, Balanced self-checking
asynchronous logic for smart card applications. Microprocess. Microsyst. 27(9), 421–430
(2003)
91. F. Mace, F-X. Standaert, I. Hassoune, J.-D. Legat, J.-J. Quisquater, A dynamic current mode
logic to counteract power analysis attacks, in Proceedings of the International Conference on
Design of Circuits and Integrated Systems (2004), pp. 186–191
92. M. Stanojlovic, P Petkovic, Strategies against side-channel-attack, in Proceedings of the Small
Systems Simulation Symposium (2010), pp. 86–89
93. M. Joye, Basics of Side-Channel Analysis, Cryptographic Engineering (Springer, Berlin,
Germany, 2009), pp. 365–380
94. P. Kocher, J. Jaffe, B. Jun, P. Rohatgi, Introduction to differential power analysis. J. Cryptogr.
Eng. 1(1), 5–27 (2011)
4 Hardware Trojans in Microcircuits
73. P. Rohatgi, Improved Techniques for Side-Channel Analysis, Cryptographic Engineering
(Springer, New York, NY, USA, 2009), pp. 381–406
74. C. Paar, J. Pelzl, B. Preneel, Understanding Cryptography: A Textbook for Students and
Practitioners (Springer-Verlag, New York, NY, USA, 2010)
75. F. Koeune, F.-X. Standaert, A tutorial on Physical Security and Side-Channel Attacks
Foundations of Security Analysis and Design III (Springer, Berlin, Germany, 2005),
pp. 78–108
76. P. Rohatgi, Electromagnetic Attacks and Countermeasures, Cryptographic Engineering
(Springer, Berlin, Germany, 2009), pp. 407–430
77. A. Schlosser, D. Nedospasov, J. Kramer, S. Orlic, J.-P. Seifert, Simple photonic emission
analysis of AES. J. Cryptogr. Eng. 3(1), 3–15 (2013)
78. D. Genkin, A. Shamir, E. Tromer, RSA key extraction via low-bandwidth acoustic cryptanalysis, Cryptology ePrint Archive, Rep. 2013/857 (2013)
79. H. Bar-El, H. Choukri, D. Naccache, M. Tunstall, C. Whelan, The sorcerer’s apprentice guide
to fault attacks. Proc. IEEE 94(2), 370–382 (2006)
80. B. Yang, K. Wu, R. Karri, Scan based side channel attack on dedicated hardware implementations of data encryption standard, in Proceedings of IEEE International Test Conference
(2004), pp. 339–344
81. J. Lee, M. Tehranipoor, C. Patel, J. Plusquellic, Securing designs against scan-based sidechannel attacks. IEEE Trans. Dependable Secure Comput. 4(4), 325–336 (2007)
82. M. Agrawal, S. Karmakar, D. Saha, D. Mukhopadhyay, Scan based side channel attacks
on stream ciphers and their counter-measures, in Proceedings of the INDOCRYPT (2008),
pp. 226–238
83. D. Merli, D. Schuster, F. Stumpf, G. Sigl, Side-Channel Analysis of PUFs and Fuzzy
Extractors, Trust and Trustworthy Computing (Springer, New York, NY, USA, 2011),
pp. 33–47
84. U. Ruhrmair et al., Power and timing side channels for PUFs and their efficient exploitation,
Cryptology ePrint Archive, Rep. 2013/851 (2013)
85. D. Karakoyunlu, B. Sunar, Differential template attacks on PUF enabled cryptographic
devices, in Proceedings of the International Workshop on Information Forensics and Security
(2010), https://doi.org/10.1109/WIFS.2010.5711445
86. A. Mahmoud, U. R hrmair, M. Majzoobi and F. Koushanfar. Combined modeling and side
channel attacks on strong PUFs, Cryptology ePrint Archivetx, Rep. 2013/632, 2013. [Online].
Available: http://eprint.iacr.org/
87. B. Kopf, D. Basin, Aninformation-theoretic model for adaptive side-channel attacks, in
Proceedings of the ACM Conference on Computer and Communications Security (2007),
pp. 286–296
88. P. Rakers, L. Connell, T. Collins, D. Russell, Secure contactless smartcard ASIC with DPA
protection. J. Solid-State Circu. 36(3), 559–565 (2001)
89. K. Tiri, M. Akmal, I. Verbauwhede, A dynamic and differential CMOS logic with signal
independent power consumption to withstand differential power analysis on smart cards, in
Proceedings of the European Solid-State Circuits Conference (2002), pp. 403–406
90. S. Moore, R. Anderson, R. Mullins, G. Taylor, J.J. Fournier, Balanced self-checking
asynchronous logic for smart card applications. Microprocess. Microsyst. 27(9), 421–430
(2003)
91. F. Mace, F-X. Standaert, I. Hassoune, J.-D. Legat, J.-J. Quisquater, A dynamic current mode
logic to counteract power analysis attacks, in Proceedings of the International Conference on
Design of Circuits and Integrated Systems (2004), pp. 186–191
92. M. Stanojlovic, P Petkovic, Strategies against side-channel-attack, in Proceedings of the Small
Systems Simulation Symposium (2010), pp. 86–89
93. M. Joye, Basics of Side-Channel Analysis, Cryptographic Engineering (Springer, Berlin,
Germany, 2009), pp. 365–380
94. P. Kocher, J. Jaffe, B. Jun, P. Rohatgi, Introduction to differential power analysis. J. Cryptogr.
Eng. 1(1), 5–27 (2011)
