Concept Basic Tools and Future Issues
We present practical GHz-clocked QKD systems, next generation entanglement QKD technologies, and QKD platform to manage the secure keys and to support a variety of applications. We then show the intrinsic limit of QKD, i.e., a key rate bound, and discuss how to realize the provable (information theoretic) security with a larger secrecy capacity over longer distances.
In particular, we present a basic theory of physical layercryptography, which characterizes the secrecy capacity, and engineers the tradeoff between the efficiency of reliable transmission and secrecy of communication. We introduce a concept to unify these schemes in photonic network, referred to as quantum photonic network. Future issues for realizing this new network paradigm are discussed.
Similar IEEE Project Titles:
1.Chaotic Cryptography Using Augmented Lorenz Equations Aided by Quantum Key Distribution.
2.Measurement-Device-Independent Quantum Cryptography.
3.Entanglement Sampling and Applications.
4.A High-Speed FPGA Implementation of an RSD-Based ECC Processor.
5.Safeguarding Quantum Key Distribution Through Detection Randomization.
6.Risk Analysis of Trojan-Horse Attacks on Practical Quantum Key Distribution Systems.
7.Fast and Generic Inversion Architectures over GF(2m) Using Modified Itoh-Tsujii Algorithms.
8.Time-Bound Anonymous Authentication for Roaming Networks.
9.Implementation of a New Lightweight Encryption Design for Embedded Security.
10.The Error Tolerance Bound for Secure Multi-Qubit QKD Against Incoherent Attack.
11.Scalable Elliptic Curve Cryptosystem FPGA Processor for NIST Prime Curves.
12.Minimizing Pixel Expansion in Visual Cryptographic Scheme for General Access Structures.
13.Customized Certificate Revocation Lists for IEEE 802.11s-Based Smart Grid AMI Networks.
14.User-Defined Privacy Grid System for Continuous Location-Based Services.
15.Effective Key Management in Dynamic Wireless Sensor Networks.
16. Effectively Exploiting Parasitic Arrays for Secret Key Sharing.
17.High-Speed Polynomial Multiplication Architecture for Ring-LWE and SHE Cryptosystems.
18.Adaptively Secure Identity-Based Broadcast Encryption with a Constant-sized Ciphertext.
19.Secret Communication Using Parallel Combinatory Spreading WFRFT.
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