Tutorials on the Foundations of Cryptography

This book PDF is perfect for those who love Computers genre, written by Yehuda Lindell and published by Springer which was released on 05 April 2017 with total hardcover pages 450. You could read this book directly on your devices with pdf, epub and kindle format, check detail and related Tutorials on the Foundations of Cryptography books below.

Tutorials on the Foundations of Cryptography
Author : Yehuda Lindell
File Size : 52,6 Mb
Publisher : Springer
Language : English
Release Date : 05 April 2017
ISBN : 9783319570488
Pages : 450 pages
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Tutorials on the Foundations of Cryptography by Yehuda Lindell Book PDF Summary

This is a graduate textbook of advanced tutorials on the theory of cryptography and computational complexity. In particular, the chapters explain aspects of garbled circuits, public-key cryptography, pseudorandom functions, one-way functions, homomorphic encryption, the simulation proof technique, and the complexity of differential privacy. Most chapters progress methodically through motivations, foundations, definitions, major results, issues surrounding feasibility, surveys of recent developments, and suggestions for further study. This book honors Professor Oded Goldreich, a pioneering scientist, educator, and mentor. Oded was instrumental in laying down the foundations of cryptography, and he inspired the contributing authors, Benny Applebaum, Boaz Barak, Andrej Bogdanov, Iftach Haitner, Shai Halevi, Yehuda Lindell, Alon Rosen, and Salil Vadhan, themselves leading researchers on the theory of cryptography and computational complexity. The book is appropriate for graduate tutorials and seminars, and for self-study by experienced researchers, assuming prior knowledge of the theory of cryptography.

Tutorials on the Foundations of Cryptography

This is a graduate textbook of advanced tutorials on the theory of cryptography and computational complexity. In particular, the chapters explain aspects of garbled circuits, public-key cryptography, pseudorandom functions, one-way functions, homomorphic encryption, the simulation proof technique, and the complexity of differential privacy. Most chapters progress methodically through motivations, foundations,

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