Extracting information from a qubit by multiple observers: Toward a theory of sequential state discrimination
arXiv:1305.4290 · doi:10.1103/PhysRevLett.111.100501
Abstract
We discuss sequential unambiguous state-discrimination measurements performed on the same qubit. Alice prepares a qubit in one of two possible states. The qubit is first sent to Bob, who measures it, and then on to Charlie, who also measures it. The object in both cases is to determine which state Alice sent. In an unambiguous state discrimination measurement, we never make a mistake, i.e. misidentify the state, but the measurement may fail, in which case we gain no information about which state was sent. We find that there is a nonzero probability for both Bob and Charlie to identify the state, and we maximize this probability. The probability that Charlie's measurement succeeds depends on how much information about the state Alice sent is left in the qubit after Bob's measurement, and this information can be quantified by the overlap between the two possible states in which Bob's measurement leaves the qubit. This paper is a first step toward developing a theory of nondestructive sequential quantum measurements, which could be useful in quantum communication schemes.
Replaced with published version
References in corpus (1)
Cited by in corpus (35)
- Genuine Einstein-Podolsky-Rosen steering of three-qubit states by multiple sequential observers
- Quantum union bounds for sequential projective measurements
- Simulating all quantum measurements using only projective measurements and postselection
- Experimental Multi-Party Sequential State Discrimination
- Discriminating single-photon states unambiguously in high dimensions
- Sequential State Discrimination and Requirement of Quantum Dissonance
- Universality of Sequential Quantum Measurements
- Near optimal discrimination of binary coherent signals via atom-light interaction
- Sequential discrimination of qudits by multiple observers
- Device-independent self-testing of unsharp measurements
- Sequential state discrimination with quantum correlation
- The Helstrom measurement: A nondestructive implementation
- Markovian and non-Markovian quantum measurements
- Extracting unambiguous information from a single qubit by sequential observers
- Post-processing of quantum instruments
- Sharing preparation contextuality in Bell experiment by arbitrary pair of sequential observers
- Unbounded Sharing of Nonlocality Using Projective Measurements
- Probabilistic resumable quantum teleportation in high dimensions
- Modified Two-Photon Interference Achieved by the Manipulation of Entanglement
- Quantum state tomography of undetected photons
- Assisted optimal state discrimination without entanglement
- Discriminating bipartite mixed states by local operations
- Indefinite causal key distribution
- Retrodiction of a sequence of measurement results in qubit interferometers
- Spatial entanglement and state engineering via four-photon Hong-Ou-Mandel interference
- Discrimination of Coherent States via Atom-Field Interaction without Rotation Wave Approximation
- Unambiguous state discrimination with intrinsic coherence
- Two-sequential Conclusive Discrimination between Binary Coherent States via Indirect Measurements
- Quantum enhancement of spoofing detection with squeezed states of light
- Conclusive discrimination by sequential receivers between arbitrary quantum states
- Quantum State Discrimination via Repeated Measurements and the Rule of Three
- Sharing quantum indistinguishability with multiple parties
- Measurement disturbance tradeoffs in three-qubit unsupervised quantum classification
- Sequential Semi-Device-Independent Quantum Randomness Certification
- Unbounded entanglement-sustaining sequential local quantum state discrimination