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This paper deals with the phase-shift fault analysis of cipher Trivium. So far, only bit-flipping technique has been presented in the literature. The best fault attack on Trivium [13] combines bit-flipping with algebraic cryptanalysis and needs to induce 2 one-bit faults and to generate 420 bits per each keystream. Our attack combines phase-shifting and algebraic cryptanalysis and needs to phase-shift 2 registers of the cipher and to generate 120 bits per each keystream.

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    Courtois, N., et al., ElimLin Algorithm Revisited, in: Fast Software Encryption, Springer Berlin Heidelberg, 2012, p. 306325.

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    Courtois, N., Bard, G. and Wagner, D., Algebraic and Slide Attacks on KeeLoq, in: Fast Software Encryption, Springer Berlin Heidelberg, 2008, p. 97115.

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    Gomułkiewicz, Marcin, et al., Synchronization Fault Cryptanalysis for Breaking A5/1, in: Experimental and Efficient Algorithms, Springer Berlin Heidelberg, 2005, p. 415427.

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    Hojsik, M. and Rudolf, B., Differential Fault Analysis of Trivium, in: Fast Software Encryption, Springer Berlin Heidelberg, 2008, p. 158172.

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    Hojsik, M. and Rudolf, B., Floating Fault Analysis of Trivium, in: Progress in Cryptology-INDOCRYPT 2008, Springer Berlin Heidelberg, 2008, p. 239250.

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    Loe, C. W. and Khoo, K., Side Channel Attacks on Irregularly Decimated Generators, in: Information Security and Cryptology — ICISC 2007, Springer Berlin Heidelberg, 2007, p. 116130.

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    McDonald, C., et al., An Algebraic Analysis of Trivium Ciphers Based on the Boolean Satisfiability Problem, IACR Cryptology ePrint Archive, 2007, 2007:129.

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    Mohamed, S. E. M., et al., Using Sat Solving to Improve Differential Fault Analysis of Trivium, in: Information Security and Assurance, Springer Berlin Heidelberg, 2011, p. 6271.

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    Simonetti, I., Faugere, J. and Perret, L., Algebraic Attack Against Trivium, in: First International Conference on Symbolic Computation and Cryptography, SCC, 2008, p. 95102.

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    Zajac, P., Solving Trivium-based Boolean Equations Using the Method of Syllogisms, Fundamenta Informaticae, 2012, p. 359373.

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    Zajac, P., A New Method to Solve MRHS Equation Systems and Its Connection to Group Factorization, Journal of Mathematical Cryptology, (2013), p. 367381.

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Gábor SIMONYI (Rényi Institute of Mathematics)
András STIPSICZ (Rényi Institute of Mathematics)
Géza TÓTH (Rényi Institute of Mathematics) 

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  • Imre BÁRÁNY (Rényi Institute of Mathematics)
  • Károly BÖRÖCZKY (Rényi Institute of Mathematics and Central European University)
  • Péter CSIKVÁRI (ELTE, Budapest) 
  • Joshua GREENE (Boston College)
  • Penny HAXELL (University of Waterloo)
  • Andreas HOLMSEN (Korea Advanced Institute of Science and Technology)
  • Ron HOLZMAN (Technion, Haifa)
  • Satoru IWATA (University of Tokyo)
  • Tibor JORDÁN (ELTE, Budapest)
  • Roy MESHULAM (Technion, Haifa)
  • Frédéric MEUNIER (École des Ponts ParisTech)
  • Márton NASZÓDI (ELTE, Budapest)
  • Eran NEVO (Hebrew University of Jerusalem)
  • János PACH (Rényi Institute of Mathematics)
  • Péter Pál PACH (BME, Budapest)
  • Andrew SUK (University of California, San Diego)
  • Zoltán SZABÓ (Princeton University)
  • Martin TANCER (Charles University, Prague)
  • Gábor TARDOS (Rényi Institute of Mathematics)
  • Paul WOLLAN (University of Rome "La Sapienza")

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2020  
Total Cites 536
WoS
Journal
Impact Factor
0,855
Rank by Mathematics 189/330 (Q3)
Impact Factor  
Impact Factor 0,826
without
Journal Self Cites
5 Year 1,703
Impact Factor
Journal  0,68
Citation Indicator  
Rank by Journal  Mathematics 230/470 (Q2)
Citation Indicator   
Citable 32
Items
Total 32
Articles
Total 0
Reviews
Scimago 24
H-index
Scimago 0,307
Journal Rank
Scimago Mathematics (miscellaneous) Q3
Quartile Score  
Scopus 139/130=1,1
Scite Score  
Scopus General Mathematics 204/378 (Q3)
Scite Score Rank  
Scopus 1,069
SNIP  
Days from  85
submission  
to acceptance  
Days from  123
acceptance  
to publication  
Acceptance 16%
Rate

2019  
Total Cites
WoS
463
Impact Factor 0,468
Impact Factor
without
Journal Self Cites
0,468
5 Year
Impact Factor
0,413
Immediacy
Index
0,135
Citable
Items
37
Total
Articles
37
Total
Reviews
0
Cited
Half-Life
21,4
Citing
Half-Life
15,5
Eigenfactor
Score
0,00039
Article Influence
Score
0,196
% Articles
in
Citable Items
100,00
Normalized
Eigenfactor
0,04841
Average
IF
Percentile
13,117
Scimago
H-index
23
Scimago
Journal Rank
0,234
Scopus
Scite Score
76/104=0,7
Scopus
Scite Score Rank
General Mathematics 247/368 (Q3)
Scopus
SNIP
0,671
Acceptance
Rate
14%

 

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Studia Scientiarum Mathematicarum Hungarica
Language English
French
German
Size B5
Year of
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1966
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2021 Volume 58
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per Year
1
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Founder Magyar Tudományos Akadémia  
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ISSN 0081-6906 (Print)
ISSN 1588-2896 (Online)