The simulation of quantum systems has been a key aim of quantum technologies for decades, and generalization to open systems is necessary to include physically realistic systems. We introduce an approach for quantum simulations of open system dynamics in terms of an environment of minimal size and a time-dependent Hamiltonian. This enables the implementation of a continuous-time simulation with a finite environment, whereas state-of-the-art methods require an infinite environment or only match the simulation at discrete times. We find the necessary and sufficient conditions for this Hamiltonian to be well behaved, and when these are not met, we show that there exists an approximate Hamiltonian that is well behaved and look into its applicat...
Couplings of a system to other degrees of freedom (that is, environmental degrees of freedom) lead t...
We show that current noisy quantum computers are ideal platforms for the simulation of quantum many-...
The study of many-body quantum dynamics in strongly-correlated systems is extremely challenging. To ...
The simulation of quantum systems has been a key aim of quantum technologies for decades, and genera...
We present a quantum algorithm to simulate general finite dimensional Lindblad master equations with...
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...
We investigate the problem of what evolutions an open quantum system described by a time-local maste...
We investigate the problem of what evolutions an open quantum system described by a time-local maste...
Non-Markovian open quantum systems represent the most general dynamics when the quantum system is co...
A variety of tasks in quantum control, ranging from purification and cooling to quantum stabilisatio...
A variety of tasks in quantum control, ranging from purification and cooling to quantum stabilisatio...
We explicitly show how to simulate time-dependent sparse Hamiltonian evolution on a quantum computer...
We show that current noisy quantum computers are ideal platforms for the simulation of quantum many-...
We show that current noisy quantum computers are ideal platforms for the simulation of quantum many-...
Couplings of a system to other degrees of freedom (that is, environmental degrees of freedom) lead t...
We show that current noisy quantum computers are ideal platforms for the simulation of quantum many-...
The study of many-body quantum dynamics in strongly-correlated systems is extremely challenging. To ...
The simulation of quantum systems has been a key aim of quantum technologies for decades, and genera...
We present a quantum algorithm to simulate general finite dimensional Lindblad master equations with...
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...
We investigate the problem of what evolutions an open quantum system described by a time-local maste...
We investigate the problem of what evolutions an open quantum system described by a time-local maste...
Non-Markovian open quantum systems represent the most general dynamics when the quantum system is co...
A variety of tasks in quantum control, ranging from purification and cooling to quantum stabilisatio...
A variety of tasks in quantum control, ranging from purification and cooling to quantum stabilisatio...
We explicitly show how to simulate time-dependent sparse Hamiltonian evolution on a quantum computer...
We show that current noisy quantum computers are ideal platforms for the simulation of quantum many-...
We show that current noisy quantum computers are ideal platforms for the simulation of quantum many-...
Couplings of a system to other degrees of freedom (that is, environmental degrees of freedom) lead t...
We show that current noisy quantum computers are ideal platforms for the simulation of quantum many-...
The study of many-body quantum dynamics in strongly-correlated systems is extremely challenging. To ...