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Daniel Rausch, M.Sc.

Researcher at the chair of Information Security and Cryptography, University of Stuttgart.

Daniel Rausch, M.Sc.
Ph.D. Student
Room: 2.458
Phone: +49 711 685 88357
daniel.rausch@sec.uni-stuttgart.de*
*Interested in thesis/project?

Postal address:
Universität Stuttgart
Universitätsstraße 38
70569 Stuttgart
Germany

Publications

2019

  • Ralf Küsters, Max Tuengerthal, and Daniel Rausch. Joint State Theorems for Public-Key Encryption and Digital Signature Functionalities with Local Computation. In Journal of Cryptology, 2019. To appear. BibTeX  Abstract 
  • Ralf Küsters, Max Tuengerthal, and Daniel Rausch. The IITM Model: a Simple and Expressive Model for Universal Composability. In Journal of Cryptology, 2019. To appear. BibTeX  Abstract 
  • Jan Camenisch, Stephan Krenn, Ralf Küsters, and Daniel Rausch. iUC: Flexible Universal Composability Made Simple. Technical Report, 2019. BibTeX  Abstract  pdf 

2018

  • Ralf Küsters, Max Tuengerthal, and Daniel Rausch. The IITM Model: a Simple and Expressive Model for Universal Composability. Technical Report 2013/025, Cryptology ePrint Archive, 2018. Available at http://eprint.iacr.org/2013/025/. This is an updated version of the technical report from 2013. Compared to the previous version, we added a discussion on Canetti's UC model, version July 2013. We provided more examples of how the IITM model can be used. The actual model did not change at all. BibTeX  Abstract  pdf 

2017

  • Ralf Küsters and Daniel Rausch. A Framework for Universally Composable Diffie-Hellman Key Exchange. In IEEE 38th Symposium on Security and Privacy (S&P 2017), pages 881-900, IEEE Computer Society, 2017. BibTeX  Abstract  pdf 
  • Ralf Küsters and Daniel Rausch. A Framework for Universally Composable Diffie-Hellman Key Exchange. Technical Report 2017/256, Cryptology ePrint Archive, 2017. Available at http://eprint.iacr.org/2017/256. BibTeX  Abstract  pdf 

2016

  • Jan Camenisch, Robert R. Enderlein, Stephan Krenn, Ralf Küsters, and Daniel Rausch. Universal Composition with Responsive Environments. In Advances in Cryptology - ASIACRYPT 2016 - 22nd International Conference on the Theory and Application of Cryptology and Information Security, pages 807-840, Springer, 2016. BibTeX  Abstract  pdf 
  • Jan Camenisch, Robert R. Enderlein, Stephan Krenn, Ralf Küsters, and Daniel Rausch. Universal Composition with Responsive Environments. Technical Report, Cryptology ePrint Archive, Report 2016/034, 2016. Available at http://eprint.iacr.org/2016/034. BibTeX  Abstract  pdf