We report the experimental measurement of bipartite quantum correlations of an unknown two-qubit state. Using a liquid state Nuclear Magnetic Resonance setup and employing geometric discord, we evaluate the quantum correlations of a state without resorting to prior knowledge of its density matrix. The method is applicable to any 2 ⊗ d system and provides, in terms of number of measurements required, an advantage over full state tomography scaling with the dimension d of the unmeasured subsystem. The negativity of quantumness is measured as well for reference. We also observe the phenomenon of sudden transition of quantum correlations when local phase and amplitude damping channels are applied to the state.EPSRC (PP - 0313/36)CNPqCAPES (108/...
Quantum correlations between parts of a composite system most clearly reveal themselves through enta...
Correlations in quantum systems exhibit a rich phenomenology under the effect of various sources of ...
Entanglement is at the heart of most quantum information tasks, and therefore considerable effort ha...
We review a recently developed theoretical approach to the experimental detection and quantification...
We review a recently developed theoretical approach to the experimental detection and quantification...
The quantification of quantum correlations (other than entanglement) usually entails labored numeric...
Given a quantum system on many qubits split into a few different parties, how many total correlation...
We review the theoretical and the experimental researches aimed at quantifying or identifying quantu...
The project concerned the study of quantum correlations (QC) in compound systems, i.e. statistical c...
We introduce a measure Q of bipartite quantum correlations for arbitrary two-qubit states, expressed...
Quantum metrology exploits quantum mechanical laws to improve the precision in estimating technologi...
We investigate evolution of quantum correlations in ensembles of two-qubit nuclear spin systems via ...
We explore experimentally the space of two-qubit quantum-correlated mixed states, including frontier...
The non-local nature of the correlations possessed by quantum systems may be revealed by experimenta...
We address the experimental determination of entropic quantum discord for systems made of a pair of ...
Quantum correlations between parts of a composite system most clearly reveal themselves through enta...
Correlations in quantum systems exhibit a rich phenomenology under the effect of various sources of ...
Entanglement is at the heart of most quantum information tasks, and therefore considerable effort ha...
We review a recently developed theoretical approach to the experimental detection and quantification...
We review a recently developed theoretical approach to the experimental detection and quantification...
The quantification of quantum correlations (other than entanglement) usually entails labored numeric...
Given a quantum system on many qubits split into a few different parties, how many total correlation...
We review the theoretical and the experimental researches aimed at quantifying or identifying quantu...
The project concerned the study of quantum correlations (QC) in compound systems, i.e. statistical c...
We introduce a measure Q of bipartite quantum correlations for arbitrary two-qubit states, expressed...
Quantum metrology exploits quantum mechanical laws to improve the precision in estimating technologi...
We investigate evolution of quantum correlations in ensembles of two-qubit nuclear spin systems via ...
We explore experimentally the space of two-qubit quantum-correlated mixed states, including frontier...
The non-local nature of the correlations possessed by quantum systems may be revealed by experimenta...
We address the experimental determination of entropic quantum discord for systems made of a pair of ...
Quantum correlations between parts of a composite system most clearly reveal themselves through enta...
Correlations in quantum systems exhibit a rich phenomenology under the effect of various sources of ...
Entanglement is at the heart of most quantum information tasks, and therefore considerable effort ha...