Operational Resource Theory of Imaginarity
arXiv:2007.14847 · doi:10.1103/PhysRevLett.126.090401
Abstract
Wave-particle duality is one of the basic features of quantum mechanics, giving rise to the use of complex numbers in describing states of quantum systems, their dynamics, and interaction. Since the inception of quantum theory, it has been debated whether complex numbers are actually essential, or whether an alternative consistent formulation is possible using real numbers only. Here, we attack this long-standing problem both theoretically and experimentally, using the powerful tools of quantum resource theories. We show that - under reasonable assumptions - quantum states are easier to create and manipulate if they only have real elements. This gives an operational meaning to the resource theory of imaginarity. We identify and answer several important questions which include the state-conversion problem for all qubit states and all pure states of any dimension, and the approximate imaginarity distillation for all quantum states. As an application, we show that imaginarity plays a crucial role for state discrimination: there exist real quantum states which can be perfectly distinguished via local operations and classical communication, but which cannot be distinguished with any nonzero probability if one of the parties has no access to imaginarity. We confirm this phenomenon experimentally with linear optics, performing discrimination of different two-photon quantum states by local projective measurements. These results prove that complex numbers are an indispensable part of quantum mechanics.
6+2 pages, 2 figures
References in corpus (8)
- Supplementary information for "Quantum supremacy using a programmable superconducting processor"
- Quantum discord and the power of one qubit
- Necessary and sufficient condition for non-zero quantum discord
- Operational Resource Theory of Imaginarity
- Resource theory of imaginarity: Quantification and state conversion
- Operational relevance of resource theories of quantum measurements
- Experimental minimum-error quantum-state discrimination in high dimensions
- Experimental Realization of Maximum Confidence State Discrimination for the Extraction of Quantum Information
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- Quantum-state texture and gate identification
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- Coherence manipulation in asymmetry and thermodynamics
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- Overcoming entropic limitations on asymptotic state transformations through probabilistic protocols
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- Geometric-Like imaginarity: quantification and state conversion
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- An introductory review on resource theories of generalized nonclassical light
- Anticoncentration and State Design of Doped Real Clifford Circuits and Tensor Networks
- Geometry of sets of Bargmann invariants
- Catalytic Transformation from Computationally Universal to Strictly Universal Measurement-Based Quantum Computation
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- Choi-Defined Resource Theories
- Projective robustness for quantum channels and measurements and their operational significance
- Quantifying the phase of quantum states
- Resource theory of dephasing estimation in multiqubit systems
- Imaginarity measures induced by real part states and the complementarity relations
- Analyzing the free states of one quantum resource theory as resource states of another
- Improving quantum channel discrimination with resourceful states
- Quantum Coherence and Distinguishability as Complementary Resources: A Resource-Theoretic Perspective from Wave-Particle Duality
- Methods of constructing superposition measures
- Golden states in resource theory of superposition
- Exploring Non-Multiplicativity in the Geometric Measure of Entanglement
- An Elementary Characterization of Bargmann Invariants
- Censorship of quantum resources against catalytic account sharing
- Off-resonant preservation and generation of imaginarity in distributed scenarios
- Strict advantage of complex quantum theory in a communication task
- Experimental Masking of Real Quantum States
- Non-locality of conjugation symmetry: characterization and examples in quantum network sensing
- Detecting quantum resources in a semi-device independent framework
- The detection power of real entanglement witnesses under local unitary equivalence
- Stochastic approximate state conversion for entanglement and general quantum resource theories
- Trade-off between Information Gain and Disturbance in Local Discrimination of Entangled Quantum States
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- Experimental certification of the nonlocal advantages of quantum imaginarity
- Stochastic emulation of quantum algorithms
- Imaginarity as a Resource within Quantum Coherence: Geometric Decomposition and Operational Conversion
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- The operational foundations of PT-symmetric and quasi-Hermitian quantum theory