Possibility, Impossibility and Cheat-Sensitivity of Quantum Bit String Commitment
arXiv:quant-ph/0504078 · doi:10.1103/PhysRevA.78.022316
Abstract
Unconditionally secure non-relativistic bit commitment is known to be impossible in both the classical and the quantum worlds. But when committing to a string of n bits at once, how far can we stretch the quantum limits? In this paper, we introduce a framework for quantum schemes where Alice commits a string of n bits to Bob in such a way that she can only cheat on a bits and Bob can learn at most b bits of information before the reveal phase. Our results are two-fold: we show by an explicit construction that in the traditional approach, where the reveal and guess probabilities form the security criteria, no good schemes can exist: a+b is at least n. If, however, we use a more liberal criterion of security, the accessible information, we construct schemes where a=4log n+O(1) and b=4, which is impossible classically. We furthermore present a cheat-sensitive quantum bit string commitment protocol for which we give an explicit tradeoff between Bob's ability to gain information about the committed string, and the probability of him being detected cheating.
10 pages, RevTex, 2 figure. v2: title change, cheat-sensitivity added
References in corpus (10)
- Randomizing quantum states: Constructions and applications
- Locking classical correlation in quantum states
- Superselection rules and quantum protocols
- Cryptography from Noisy Storage
- Entropic uncertainty relations and locking: tight bounds for mutually unbiased bases
- Uncertainty, Monogamy, and Locking of Quantum Correlations
- On the Power of Quantum Memory
- Implementable Quantum Bit-String Commitment Protocol
- Security Trade-offs in Ancilla-Free Quantum Bit Commitment in the Presence of Superselection Rules
- Group Covariant Protocols for Quantum String Commitment
Cited by in corpus (37)
- Advances in Quantum Cryptography
- Entropic Uncertainty Relations and their Applications
- Quantum Cryptography Beyond Quantum Key Distribution
- Entanglement sampling and applications
- A Simple Voting Protocol on Quantum Blockchain
- An equality between entanglement and uncertainty
- From Low-Distortion Norm Embeddings to Explicit Uncertainty Relations and Efficient Information Locking
- Locking classical information
- Quantum-locked key distribution at nearly the classical capacity rate
- Quantum enigma machines and the locking capacity of a quantum channel
- Quantum key distribution based on orthogonal states allows secure quantum bit commitment
- Pretty good measures in quantum information theory
- Noise and measurement errors in a practical two-state quantum bit commitment protocol
- Robust quantum data locking from phase modulation
- Security bound of cheat sensitive quantum bit commitment
- Quantum Side Information: Uncertainty Relations, Extractors, Channel Simulations
- Quantum cryptography beyond key distribution: theory and experiment
- Quantum data locking for high-rate private communication
- Uncertainty Relations in the Presence of Quantum Memory for Mutually Unbiased Measurements
- An Overview of CV-MDI-QKD
- Continuous-variable quantum enigma machines for long-distance key distribution
- Optimal bounds for quantum bit commitment
- Quantum-enhanced Logic-based Blockchain I: Quantum Honest-success Byzantine Agreement and Qulogicoin
- Quantifying the Leakage of Quantum Protocols for Classical Two-Party Cryptography
- Improved Loss-Tolerant Quantum Coin Flipping
- Error-tolerant oblivious transfer in the noisy-storage model
- Better bounds on optimal measurement and entanglement recovery, with applications to uncertainty and monogamy relations
- Optimal quantum strong coin flipping
- Non-Interactive Statistically-Hiding Quantum Bit Commitment from Any Quantum One-Way Function
- On the Power of Two-Party Quantum Cryptography
- Can relativistic bit commitment lead to secure quantum oblivious transfer?
- General framework of quantum complementarity from a measurement-based perspective
- Erasable Bit Commitment from Temporary Quantum Trust
- A simpler proof of existence of quantum weak coin flipping with arbitrarily small bias
- Bit Commitment for Lottery and Auction on Quantum Blockchain
- Comment on "Masking quantum information is impossible"
- Impossibility of Quantum Private Queries