Degrees of concealment and bindingness in quantum bit commitment protocols
arXiv:quant-ph/0106019 · doi:10.1103/PhysRevA.65.012310
Abstract
Although it is impossible for a bit commitment protocol to be both arbitrarily concealing and arbitrarily binding, it is possible for it to be both partially concealing and partially binding. This means that Bob cannot, prior to the beginning of the unveiling phase, find out everything about the bit committed, and Alice cannot, through actions taken after the end of the commitment phase, unveil whatever bit she desires. We determine upper bounds on the degrees of concealment and bindingness that can be achieved simultaneously in any bit commitment protocol, although it is unknown whether these can be saturated. We do, however, determine the maxima of these quantities in a restricted class of bit commitment protocols, namely those wherein all the systems that play a role in the commitment phase are supplied by Alice. We show that these maxima can be achieved using a protocol that requires Alice to prepare a pair of systems in an entangled state, submit one of the pair to Bob at the commitment phase, and the other at the unveiling phase. Finally, we determine the form of the trade-off that exists between the degree of concealment and the degree of bindingness given various assumptions about the purity and dimensionality of the states used in the protocol.
10 pages, 1 figure. Typos corrected
Cited by in corpus (99)
- Reference frames, superselection rules, and quantum information
- In defense of the epistemic view of quantum states: a toy theory
- Spatial correlations in parametric down-conversion
- Quantum Mechanics as Quantum Information (and only a little more)
- Measuring Entangled Qutrits and Their Use for Quantum Bit Commitment
- Locking classical correlation in quantum states
- Practical private database queries based on a quantum key distribution protocol
- Discrete, Tunable Color Entanglement
- Manipulating biphotonic qutrits
- Experimental estimation of the dimension of classical and quantum systems
- Dimension witnesses and quantum state discrimination
- Experimental Quantum Coin Tossing
- Contextual advantage for state discrimination
- Reexamination of Quantum Bit Commitment: the Possible and the Impossible
- Single qudit realization of the Deutsch algorithm using superconducting many-level quantum circuits
- Experimental bit commitment based on quantum communication and special relativity
- Alternative fidelity measure for quantum states
- Quantum walks with encrypted data
- A quantum protocol for cheat-sensitive weak coin flipping
- Quantum cryptography: key distribution and beyond
- Possibility, Impossibility and Cheat-Sensitivity of Quantum Bit String Commitment
- On bit-commitment based quantum coin flipping
- Flipping quantum coins
- Fully Distrustful Quantum Cryptography
- Quantum weak coin flipping with arbitrarily small bias
- A large family of quantum weak coin-flipping protocols
- Experimental Observation of Quantum Correlations in Modular Variables
- Experimental investigation of quantum key distribution with position and momentum of photon pairs
- From Low-Distortion Norm Embeddings to Explicit Uncertainty Relations and Efficient Information Locking
- Secure bit commitment from relativistic constraints
- Quantum Proofs
- A short impossibility proof of Quantum Bit Commitment
- Security of quantum bit string commitment depends on the information measure
- Fair Loss-Tolerant Quantum Coin Flipping
- Separability of entangled qutrits in noisy channels
- Multiphoton discrimination at telecom wavelength with charge integration photon detector
- Experimental quantum tossing of a single coin
- Quantum dice rolling: A multi-outcome generalization of quantum coin flipping
- Impossibility of Growing Quantum Bit Commitments
- Quantum coin tossing and bit-string generation in the presence of noise
- Variable Bias Coin Tossing
- Quantum key distribution based on orthogonal states allows secure quantum bit commitment
- Provably Secure Experimental Quantum Bit-String Generation
- Bi-directional mapping between polarization and spatially encoded photonic qutrits
- Correspondence between continuous variable and discrete quantum systems of arbitrary dimensions
- Photon number resolving detection at telecom wavelength with a charge integration photon detector
- Device-Independent Bit Commitment based on the CHSH Inequality
- An Entanglement-Based Protocol For Strong Coin Tossing With Bias 1/4
- Lower bound for a class of weak quantum coin flipping protocols
- Security of Quantum Bit-String Generation
- Quantum cryptography beyond key distribution: theory and experiment
- A search for quantum coin-flipping protocols using optimization techniques
- Simplified quantum bit commitment using single photon nonlocality
- Tight bounds for classical and quantum coin flipping
- Measurement-Device-Independent Quantum Coin Tossing
- Quantum state targeting
- Cryptography in a Quantum World
- A family of loss-tolerant quantum coin flipping protocols
- Heralded generation of symmetric and asymmetric entangled qudits with weak cross-Kerr nonlinearity
- A heralded two-qutrit entangled state
- Quantum interactive proofs using quantum energy teleportation
- Efficient and flexible generation of entangled qudits with cross phase modulation
- The Impossibility of Efficient Quantum Weak Coin-Flipping
- The Laws of Physics and Cryptographic Security
- Quantum bit commitment under Gaussian constraints
- Stronger Methods of Making Quantum Interactive Proofs Perfectly Complete
- Optimal bounds for quantum bit commitment
- Decoherence-based exploration of d-dimensional one-way quantum computation
- The cryptographic power of misaligned reference frames
- Serial composition of quantum coin-flipping, and bounds on cheat detection for bit-commitment
- Methods for Producing Decoherence-Free States and Noiseless Subsystems Using Photonic Qutrits
- Quantifying the Leakage of Quantum Protocols for Classical Two-Party Cryptography
- Improved Loss-Tolerant Quantum Coin Flipping
- Entanglement creation and distribution on a graph of exchange-coupled qutrits
- Evidence-based certification of quantum dimensions
- Optimal quantum strong coin flipping
- Security Trade-offs in Ancilla-Free Quantum Bit Commitment in the Presence of Superselection Rules
- Uncertainty relations for multiple measurements with applications
- On the Power of Two-Party Quantum Cryptography
- Lower Bounds for Quantum Oblivious Transfer
- Unconditionally secure relativistic multi-party biased coin flipping and die rolling
- Can relativistic bit commitment lead to secure quantum oblivious transfer?
- Unconditionally secure quantum bit commitment based on the uncertainty principle
- An introduction to quantum coin-tossing
- An optical implementation of quantum bit commitment using infinite-dimensional systems
- A New Protocol and Lower Bounds for Quantum Coin Flipping
- New binding-concealing trade-offs for quantum string commitment
- Quantum and classical coin-flipping protocols based on bit-commitment and their point games
- Semi-loss-tolerant strong quantum coin-flipping protocol using quantum non-demolition measurement
- Quantum Commitments from Complexity Assumptions
- Quantum Bit Commitment with a Composite Evidence
- Separating quantum communication and approximate rank
- Breaking barriers in two-party quantum cryptography via stochastic semidefinite programming
- Quantum enhancement of qutrit dynamics through driving field and photonic band-gap crystal
- No-Go Bounds for Quantum Seals
- Semi-Loss-Tolerant Strong Coin Flipping Protocol Using EPR Pairs
- Composable Security in the Bounded-Quantum-Storage Model
- Cryptanalysis and improvement of Wu-Cai-Wu-Zhang's quantum private comparison protocol
- Impossibility of Quantum Private Queries