A Decade of Lattice Cryptography
| AUTHOR | Peikert, Chris |
| PUBLISHER | Now Publishers (03/24/2016) |
| PRODUCT TYPE | Paperback (Paperback) |
Description
Lattice-based cryptography is the use of conjectured hard problems on point lattices in Rn as the foundation for secure cryptographic systems. Attractive features of lattice cryptography include apparent resistance to quantum attacks (in contrast with most number-theoretic cryptography), high asymptotic efficiency and parallelism, security under worst-case intractability assumptions, and solutions to long-standing open problems in cryptography. This monograph surveys most of the major developments in lattice cryptography over the past ten years. The main focus is on the foundational short integer solution (SIS) and learning with errors (LWE) problems (and their more efficient ring-based variants), their provable hardness assuming the worst-case intractability of standard lattice problems, and their many cryptographic applications.
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Product Format
Product Details
ISBN-13:
9781680831122
ISBN-10:
1680831127
Binding:
Paperback or Softback (Trade Paperback (Us))
Content Language:
English
More Product Details
Page Count:
158
Carton Quantity:
50
Product Dimensions:
6.14 x 0.34 x 9.21 inches
Weight:
0.51 pound(s)
Country of Origin:
US
Subject Information
BISAC Categories
Computers | Computer Science
Computers | Security - Cryptography & Encryption
Descriptions, Reviews, Etc.
publisher marketing
Lattice-based cryptography is the use of conjectured hard problems on point lattices in Rn as the foundation for secure cryptographic systems. Attractive features of lattice cryptography include apparent resistance to quantum attacks (in contrast with most number-theoretic cryptography), high asymptotic efficiency and parallelism, security under worst-case intractability assumptions, and solutions to long-standing open problems in cryptography. This monograph surveys most of the major developments in lattice cryptography over the past ten years. The main focus is on the foundational short integer solution (SIS) and learning with errors (LWE) problems (and their more efficient ring-based variants), their provable hardness assuming the worst-case intractability of standard lattice problems, and their many cryptographic applications.
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