Test of mutually unbiased bases for six-dimensional photonic quantum systems
arXiv:1304.4081 · doi:10.1038/srep02726
Abstract
In quantum information, complementarity of quantum mechanical observables plays a key role. If a system resides in an eigenstate of an observable, the probability distribution for the values of a complementary observable is flat. The eigenstates of these two observables form a pair of mutually unbiased bases (MUBs). More generally, a set of MUBs consists of bases that are all pairwise unbiased. Except for specific dimensions of the Hilbert space, the maximal sets of MUBs are unknown in general. Even for a dimension as low as six, the identification of a maximal set of MUBs remains an open problem, although there is strong numerical evidence that no more than three simultaneous MUBs do exist. Here, by exploiting a newly developed holographic technique, we implement and test different sets of three MUBs for a single photon six-dimensional quantum state (a qusix), encoded either in a hybrid polarization-orbital angular momentum or a pure orbital angular momentum Hilbert space. A close agreement is observed between theory and experiments. Our results can find applications in state tomography, quantitative wave-particle duality, quantum key distribution and tests on complementarity and logical indeterminacy.
8 pages, 4 figures
References in corpus (12)
- Complete experimental toolbox for alignment-free quantum communication
- Characterization of high-dimensional entangled systems via mutually unbiased measurements
- Experimental optimal cloning of four-dimensional quantum states of photons
- Maximal Sets of Mutually Unbiased Quantum States in Dimension Six
- Experimental implementation of a Kochen-Specker set of quantum tests
- Experimental generation and characterization of single-photon hybrid ququarts based on polarization-orbital angular momentum encoding
- Numerical evidence for the maximum number of mutually unbiased bases in dimension six
- On the Impossibility to Extend Triples of Mutually Unbiased Product Bases in Dimension Six
- Experimental observation of impossible-to-beat quantum advantage on a hybrid photonic system
- Mutually unbiased triplets from non-affine families of complex Hadamard matrices in dimension six
- Robustness of a quantum key distribution with two and three mutually unbiased bases
- There is no generalization of known formulas for mutually unbiased bases
Cited by in corpus (26)
- High-dimensional quantum cryptography with twisted light
- Free-space quantum key distribution by rotation-invariant twisted photons
- Storage and retrieval of vector beams of light in a multiple-degree-of-freedom quantum memory
- Photonic quantum walk in a single beam with twisted light
- Quantum walks and wavepacket dynamics on a lattice with twisted photons
- Distribution of high-dimensional entanglement via an intra-city free-space link
- Experimental engineering of arbitrary qudit states with discrete-time quantum walks
- Limitations to the determination of a Laguerre-Gauss spectrum via projective, phase-flattening measurement
- Experimental investigation of high-dimensional quantum key distribution protocols with twisted photons
- Applying the simplest Kochen-Specker set for quantum information processing
- Device-independent certification of high-dimensional quantum systems
- Resilience of hybrid optical angular momentum qubits to turbulence
- Hardy's paradox tested in the spin-orbit Hilbert space of single photons
- Tighter spots of light with superposed orbital angular momentum beams
- Regression of high dimensional angular momentum states of light
- How many mutually unbiased bases are needed to detect bound entangled states?
- A classical to quantum optical network link for orbital angular momentum carrying light
- Testing noncontextuality inequalities that are building blocks of quantum correlations
- Characterization of a spatial light modulator as a polarization quantum channel
- Distrustful quantum steering
- Certification of the maximally entangled state using non-projective measurements
- Experimental test of high-dimensional quantum contextuality based on contextuality concentration
- Bounding quantum theory with the exclusivity principle in a two-city experiment
- Atomic form factor for twisted vortex photons interacting with atoms
- Enhanced Compressive Threshold Quantum State Tomography for Qudit Systems
- Classical analogy of a cat state using vortex light