Secure Multi-Party Computation
eBook - PDF

Secure Multi-Party Computation

  1. 296 pages
  2. English
  3. PDF
  4. Available on iOS & Android
eBook - PDF

Secure Multi-Party Computation

About this book

Secure Multi-Party Computation (MPC) is one of the most powerful tools developed by modern cryptography: it facilitates collaboration among mutually distrusting parties by implementing a virtual trusted party. Despite the remarkable potential of such a tool, and decades of active research in the theoretical cryptography community, it remains a relatively inaccessible and lesser-known concept outside of this field. Only a handful of resources are available to students and researchers wishing to learn more about MPC. The editors of this book have assembled a comprehensive body of basic and advanced material on MPC, authored by experts in the field. It will serve as a starting point for those interested in pursuing research related to MPC, whether they are students learning about it for the first time or researchers already working in the area. The book begins with tutorials introducing the concept of MPC and zero-knowledge proofs, an important theoretical platform where many of the concepts central to MPC were shaped. The remaining chapters deal with classical as well as recent MPC protocols, and a variety of related topics. Each chapter is self-contained and can be read independently of the others.

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Yes, you can access Secure Multi-Party Computation by M.M. Prabhakaran,A. Sahai,Amit Sahai in PDF and/or ePUB format, as well as other popular books in Computer Science & Computer Science General. We have over one million books available in our catalogue for you to explore.

Table of contents

  1. Title Page
  2. Foreword
  3. Preface
  4. Contents
  5. General Cryptographic Protocols: The Very Basics
  6. A Short Tutorial of Zero-Knowledge
  7. Security and Composition of Cryptographic Protocols: A Tutorial
  8. The BGW Protocol for Perfectly-Secure Multiparty Computation
  9. Information-Theoretic Secure Multiparty Computation
  10. The IPS Compiler
  11. Randomization Techniques for Secure Computation
  12. Complexity of Multi-Party Computation Functionalities
  13. Author Index