Machine learning finds application in the quantum control and readout of qubits. In this work we apply artificial neural networks to assist the manipulation and the readout of a prototypical molecular spin qubit-an oxovanadium(IV) moiety-in two experiments designed to test the amplitude and the phase recognition, respectively. We first successfully use an artificial network to analyze the output of a storage-retrieval protocol with four input pulses to recognize the echo positions and, with further post selection on the results, to infer the initial input pulse sequence. We then apply an artificial neural network to ascertain the phase of the experimentally measured Hahn echo, showing that it is possible to correctly detect its phase and to...
Click on the DOI link to access this conference paper (may not be free).Complete characterization of...
We review the implementation of quantum information processing using quantum spins and pulsed spin r...
We demonstrate how machine learning is able to model experiments in quantum physics. Quantum entangl...
The detection of nuclear spins using individual electron spins has enabled diverse opportunities in ...
Scientific machine learning denotes the integration of machine learning into traditional scientific ...
At its core, quantum mechanics is a theory developed to describe fundamental observations in the spe...
Special Issue: Quantum Machine Learning.A probing scheme is considered with an accessible and contro...
Machine learning with artificial neural networks is revolutionizing science. The most advanced chall...
During the previous decade, artificial neural networks have excelled in a wide range of scientific d...
The dynamical behaviour of complex quantum systems can be harnessed for information processing. With...
Quantum machine learning offers a promising advantage in extracting information about quantum states...
Abstract We demonstrate how one can use machine learning techniques to bypass the technical difficul...
The enormous theoretical potential of quantum information processing (QIP) is driving the pursuit fo...
We review recent progress towards implementing quantum information processing protocols using electr...
Single-shot images are the standard readout of experiments with ultracold atoms, the imperfect refle...
Click on the DOI link to access this conference paper (may not be free).Complete characterization of...
We review the implementation of quantum information processing using quantum spins and pulsed spin r...
We demonstrate how machine learning is able to model experiments in quantum physics. Quantum entangl...
The detection of nuclear spins using individual electron spins has enabled diverse opportunities in ...
Scientific machine learning denotes the integration of machine learning into traditional scientific ...
At its core, quantum mechanics is a theory developed to describe fundamental observations in the spe...
Special Issue: Quantum Machine Learning.A probing scheme is considered with an accessible and contro...
Machine learning with artificial neural networks is revolutionizing science. The most advanced chall...
During the previous decade, artificial neural networks have excelled in a wide range of scientific d...
The dynamical behaviour of complex quantum systems can be harnessed for information processing. With...
Quantum machine learning offers a promising advantage in extracting information about quantum states...
Abstract We demonstrate how one can use machine learning techniques to bypass the technical difficul...
The enormous theoretical potential of quantum information processing (QIP) is driving the pursuit fo...
We review recent progress towards implementing quantum information processing protocols using electr...
Single-shot images are the standard readout of experiments with ultracold atoms, the imperfect refle...
Click on the DOI link to access this conference paper (may not be free).Complete characterization of...
We review the implementation of quantum information processing using quantum spins and pulsed spin r...
We demonstrate how machine learning is able to model experiments in quantum physics. Quantum entangl...