Simulating computationally intractable many-body problems on a quantum simulator holds great potential to deliver insights into physical, chemical, and biological systems. While the implementation of Hamiltonian dynamics within a quantum simulator has already been demonstrated in many experiments, the problem of initialization of quantum simulators to a suitable quantum state has hitherto remained mostly unsolved. Here, we show that already a single dissipatively driven auxiliary particle can efficiently prepare the quantum simulator in a low-energy state of largely arbitrary Hamiltonians. We demonstrate the scalability of our approach and show that it is robust against unwanted sources of decoherence. While our initialization protocol is l...
Several quantum hardware platforms, while being unable to perform fullyfault-tolerant quantum comput...
We introduce a scheme for the quantum simulation of many-body decoherence based on the unitary evolu...
We show that current noisy quantum computers are ideal platforms for the simulation of quantum many-...
Simulating computationally intractable many-body problems on a quantum simulator holds great potenti...
We develop a scheme for engineering genuine thermal states in analog quantum simulation platforms by...
We develop a scheme for engineering genuine thermal states in analog quantum simulation platforms by...
When a system thermalizes it loses all memory of its initial conditions. Even within a closed quant...
Abstract. We propose dynamical control schemes for Hamiltonian simulation in many-body quantum syste...
We propose dynamical control schemes for Hamiltonian simulation in many-body quantum systems that av...
We propose dynamical control schemes for Hamiltonian simulation in many-body quantum systems that av...
In a recent experiment, Barreiro et al. demonstrated the fundamental building blocks of an open-syst...
The simulation of quantum systems has been a key aim of quantum technologies for decades, and genera...
Several quantum hardware platforms, while being unable to perform fully fault-tolerant quantum compu...
The simulation of quantum systems has been a key aim of quantum technologies for decades, and genera...
In his famous 1981 talk, Feynman proposed that unlike classical computers, which would presumably ex...
Several quantum hardware platforms, while being unable to perform fullyfault-tolerant quantum comput...
We introduce a scheme for the quantum simulation of many-body decoherence based on the unitary evolu...
We show that current noisy quantum computers are ideal platforms for the simulation of quantum many-...
Simulating computationally intractable many-body problems on a quantum simulator holds great potenti...
We develop a scheme for engineering genuine thermal states in analog quantum simulation platforms by...
We develop a scheme for engineering genuine thermal states in analog quantum simulation platforms by...
When a system thermalizes it loses all memory of its initial conditions. Even within a closed quant...
Abstract. We propose dynamical control schemes for Hamiltonian simulation in many-body quantum syste...
We propose dynamical control schemes for Hamiltonian simulation in many-body quantum systems that av...
We propose dynamical control schemes for Hamiltonian simulation in many-body quantum systems that av...
In a recent experiment, Barreiro et al. demonstrated the fundamental building blocks of an open-syst...
The simulation of quantum systems has been a key aim of quantum technologies for decades, and genera...
Several quantum hardware platforms, while being unable to perform fully fault-tolerant quantum compu...
The simulation of quantum systems has been a key aim of quantum technologies for decades, and genera...
In his famous 1981 talk, Feynman proposed that unlike classical computers, which would presumably ex...
Several quantum hardware platforms, while being unable to perform fullyfault-tolerant quantum comput...
We introduce a scheme for the quantum simulation of many-body decoherence based on the unitary evolu...
We show that current noisy quantum computers are ideal platforms for the simulation of quantum many-...