In recent years, the performance of different entanglement indicators obtained directly from tomograms has been assessed in continuous-variable and hybrid quantum systems. In this paper, we carry out this task in the case of spin systems. We compute the entanglement indicators from actual experimental data obtained from three liquid-state nuclear magnetic resonance (NMR) experiments and compare them with standard entanglement measures calculated from the corresponding density matrices, both experimentally reconstructed and numerically computed. The gross features of entanglement dynamics and spin squeezing properties are found to be reproduced by these entanglement indicators. However, the extent to which these indicators and spin squeezing...
In this work, we have been working on the concept of quantum entanglement. At first, we studied the ...
The positive and not completely positive maps of density matrices are discussed. Probability represe...
The enormous theoretical potential of quantum information processing (QIP) is driving the pursuit fo...
In recent years, the performance of different entanglement indicators obtained directly from tomogra...
Recent theoretical investigations on tomographic entanglement indicators have showcased the advantag...
Recent theoretical investigations on tomographic entanglement indicators have showcased the advantag...
We discuss the applications of Nuclear Magnetic Resonance (NMR) to quantum information processing, f...
We introduce a protocol to classify three-qubit pure states into different entanglement classes and ...
We propose a new approach to the measurement of a single spin state, based on nuclear magnetic reson...
The quantum state tomography on an NMR system is analyzed. The evolution of a given system by its Ha...
We report on the experimental simulation of spin squeezing using a liquid-state nuclear magnetic res...
The subject of this thesis is devoted to a class of multiparticle entangled states known as the clus...
The highly parallel nature of the fundamental principles of quantum mechanics means that certain key...
Abstract The quantum nature of bulk ensemble NMR quantum computing — the center of recent heated deb...
Fifty years of developments in nuclear magnetic resonance (NMR) have resulted in an unrivaled degree...
In this work, we have been working on the concept of quantum entanglement. At first, we studied the ...
The positive and not completely positive maps of density matrices are discussed. Probability represe...
The enormous theoretical potential of quantum information processing (QIP) is driving the pursuit fo...
In recent years, the performance of different entanglement indicators obtained directly from tomogra...
Recent theoretical investigations on tomographic entanglement indicators have showcased the advantag...
Recent theoretical investigations on tomographic entanglement indicators have showcased the advantag...
We discuss the applications of Nuclear Magnetic Resonance (NMR) to quantum information processing, f...
We introduce a protocol to classify three-qubit pure states into different entanglement classes and ...
We propose a new approach to the measurement of a single spin state, based on nuclear magnetic reson...
The quantum state tomography on an NMR system is analyzed. The evolution of a given system by its Ha...
We report on the experimental simulation of spin squeezing using a liquid-state nuclear magnetic res...
The subject of this thesis is devoted to a class of multiparticle entangled states known as the clus...
The highly parallel nature of the fundamental principles of quantum mechanics means that certain key...
Abstract The quantum nature of bulk ensemble NMR quantum computing — the center of recent heated deb...
Fifty years of developments in nuclear magnetic resonance (NMR) have resulted in an unrivaled degree...
In this work, we have been working on the concept of quantum entanglement. At first, we studied the ...
The positive and not completely positive maps of density matrices are discussed. Probability represe...
The enormous theoretical potential of quantum information processing (QIP) is driving the pursuit fo...