Information complementarity: A new paradigm for decoding quantum incompatibility
arXiv:1406.6898 · doi:10.1038/srep14317
Abstract
The existence of observables that are incompatible or not jointly measurable is a characteristic feature of quantum mechanics, which lies at the root of a number of nonclassical phenomena, such as uncertainty relations, wave--particle dual behavior, Bell-inequality violation, and contextuality. However, no intuitive criterion is available for determining the compatibility of even two (generalized) observables, despite the overarching importance of this problem and intensive efforts of many researchers. Here we introduce an information theoretic paradigm together with an intuitive geometric picture for decoding incompatible observables, starting from two simple ideas: Every observable can only provide limited information and information is monotonic under data processing. By virtue of quantum estimation theory, we introduce a family of universal criteria for detecting incompatible observables and a natural measure of incompatibility, which are applicable to arbitrary number of arbitrary observables. Based on this framework, we derive a family of universal measurement uncertainty relations, provide a simple information theoretic explanation of quantitative wave--particle duality, and offer new perspectives for understanding Bell nonlocality, contextuality, and quantum precision limit.
13+5 pages, 2 figures, to appear in Scientific Reports
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- Evaluating the Holevo Cramér-Rao bound for multi-parameter quantum metrology
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- Achieving quantum precision limit in adaptive qubit state tomography
- Steering Bell-diagonal states
- Adaptive strategy for joint measurements
- Intrinsic Sensitivity Limits for Multiparameter Quantum Metrology
- Universally Fisher-Symmetric Informationally Complete Measurements
- Fisher-symmetric informationally complete measurements for pure states
- Complementarity Relations Between Quantum Steering Criteria
- Multiparameter critical quantum metrology with impurity probes
- On the quantumness of multiparameter estimation problems for qubit systems
- A necessary condition for incompatibility of observables in general probabilistic theories
- Joint measurability of quantum effects and the matrix diamond
- Uncertainty and Trade-offs in Quantum Multiparameter Estimation
- Einstein-Podolsky-Rosen correlations and Bell correlations in the simplest scenario
- Evading noise in multiparameter quantum metrology with indefinite causal order
- Random positive operator valued measures
- Compatibility of quantum measurements and inclusion constants for the matrix jewel
- Quantum Measurements in the Light of Quantum State Estimation
- Generating a 4-photon Tetrahedron State: Towards Simultaneous Super-sensitivity to Non-commuting Rotations
- Agnostic Phase Estimation
- Order preserving maps on quantum measurements
- Multiparameter transmission estimation at the quantum Cramér-Rao limit on a cloud quantum computer
- Quantum-enhanced joint estimation of phase and phase diffusion
- Critical Quantum Sensing: a tutorial on parameter estimation near quantum phase transitions
- Optimizing measurement tradeoffs in multiparameter spatial superresolution
- A Fisher information-based incompatibility criterion for quantum channels
- Experimental demonstration of complementarity relations between quantum steering criteria