Universal quantum computers are potentially an ideal setting for simulating many-body quantum dynamics that is out of reach for classical digital computers. We use state-of-the-art IBM quantum computers to study paradigmatic examples of condensed matter physics—we simulate the effects of disorder and interactions on quantum particle transport, as well as correlation and entanglement spreading. Our benchmark results show that the quality of the current machines is below what is necessary for quantitatively accurate continuous-time dynamics of observables and reachable system sizes are small comparable to exact diagonalization. Despite this, we are successfully able to demonstrate clear qualitative behaviour associated with localization physi...
Quantum computers are built directly from units that follow the laws of quantum mechanics. This allo...
We show that current noisy quantum computers are ideal platforms for the simulation of quantum many-...
International audienceQuantum computing technologies are making steady progress. This has opened new...
Universal quantum computers are potentially an ideal setting for simulating many-body quantum dynami...
The past few years have witnessed the concrete and fast spreading of quantum technologies for practi...
The past few years have witnessed the concrete and fast spreading of quantum technologies for practi...
For many years after the dawn of computing machines, it seemed to be the case that the dynamics of a...
After the emergence of quantum mechanics and realising its need for an accurate understanding of phy...
We describe a simulation approach to study the functioning of Quantum Computer hardware. The latter ...
We describe a simulation approach to study the functioning of Quantum Computer hardware. The latter ...
We describe a simulation approach to study the functioning of Quantum Computer hardware. The latter ...
Quantum processing of information has become a rapidly evolving field of research in physics, mathem...
Quantum processing of information has become a rapidly evolving field of research in physics, mathem...
We show that current noisy quantum computers are ideal platforms for the simulation of quantum many-...
We describe a simulation approach to study the functioning of Quantum Computer hardware. The latter ...
Quantum computers are built directly from units that follow the laws of quantum mechanics. This allo...
We show that current noisy quantum computers are ideal platforms for the simulation of quantum many-...
International audienceQuantum computing technologies are making steady progress. This has opened new...
Universal quantum computers are potentially an ideal setting for simulating many-body quantum dynami...
The past few years have witnessed the concrete and fast spreading of quantum technologies for practi...
The past few years have witnessed the concrete and fast spreading of quantum technologies for practi...
For many years after the dawn of computing machines, it seemed to be the case that the dynamics of a...
After the emergence of quantum mechanics and realising its need for an accurate understanding of phy...
We describe a simulation approach to study the functioning of Quantum Computer hardware. The latter ...
We describe a simulation approach to study the functioning of Quantum Computer hardware. The latter ...
We describe a simulation approach to study the functioning of Quantum Computer hardware. The latter ...
Quantum processing of information has become a rapidly evolving field of research in physics, mathem...
Quantum processing of information has become a rapidly evolving field of research in physics, mathem...
We show that current noisy quantum computers are ideal platforms for the simulation of quantum many-...
We describe a simulation approach to study the functioning of Quantum Computer hardware. The latter ...
Quantum computers are built directly from units that follow the laws of quantum mechanics. This allo...
We show that current noisy quantum computers are ideal platforms for the simulation of quantum many-...
International audienceQuantum computing technologies are making steady progress. This has opened new...