Certification of three black boxes with unsharp measurements using sequential quantum random access codes
arXiv:2103.03075 · doi:10.1088/1367-2630/abf614
Abstract
Unsharp measurements play an increasingly important role in quantum information theory. In this paper, we study a three-party prepare-transform-measure experiment with unsharp measurements based on sequential random access codes (RACs). We derive optimal trade-off between the two correlation witnesses in sequential quantum random access codes (QRACs), and use the result to complete the self-testing of quantum preparations, instruments and measurements for three sequential parties. We also give the upper and lower bounds of the sharpness parameter to complete the robustness analysis of the self-testing scheme. In addition, we find that classical correlation witness violation based on sequential RACs cannot be obtained by both correlation witnesses simultaneously. This means that if the second party uses strong unsharp measurements to overcome the classical upper bound, the third party cannot do so even with sharp measurements. Finally, we give the analysis and comparison of the random number generation efficiency under different sharpness parameters based on the determinant value, and QRACs separately. This letter sheds new light on generating random numbers among multi-party in semi-device independent framework.
arXiv admin note: text overlap with arXiv:1905.06726 by other authors
References in corpus (17)
- Semi-device-independent security of one-way quantum key distribution
- A lower bound on the dimension of a quantum system given measured data
- Arbitrarily many independent observers can share the nonlocality of a single maximally entangled qubit pair
- State tomography via weak measurements
- Bounding the set of finite dimensional quantum correlations
- Sequential random access codes and self-testing of quantum measurement instruments
- Self-testing non-projective quantum measurements in prepare-and-measure experiments
- Scalable Bell inequalities for qubit graph states and robust self-testing
- Robust self testing of the 3-qubit state
- Device-independent tomography of multipartite quantum states
- Experimental characterisation of unsharp qubit observables and sequential measurement incompatibility via quantum random access codes
- Semi-device-independent self-testing of unsharp measurements
- Detection of genuine tripartite entanglement by multiple sequential observers
- Experimental Demonstration of Sequential Quantum Random Access Codes
- Semi-device-independent certification of independent quantum state and measurement devices
- Properties of dimension witnesses and their semi-definite programming relaxations
- Detection efficiency and noise in semi-device independent randomness extraction protocol
Cited by in corpus (4)
- Quantum Correlation Sharing: A Review On Recent Progress From Nonlocality To Other Non-Classical Correlations
- Device-independent self-testing of unsharp measurements
- Self-testing in a constrained prepare-measure scenario sans assuming quantum dimension
- Quantum Random Access Codes Implementation for Resource Allocation and Coexistence with Classical Telecommunication