We present an approach to gain detailed control on the quantum simulation of strongly correlated quantum many-body systems by constructing the explicit finite quantum circuits that diagonalize their dynamics. As a particularly simple instance, the full dynamics of a one-dimensional Quantum Ising model in a transverse field with four spins is shown to be reproduced using a quantum circuit of only six local gates. This opens up the possibility of experimentally producing strongly correlated states, their time evolution at zero time, and even thermal superpositions at zero temperature. Our method also allows one to uncover the exact circuits corresponding to models that exhibit topological order and to stabilizer states
We show how a quantum Ising spin chain in a time-dependent transverse magnetic field can be simulate...
In recent years, due to unprecedented success in controlling and manipulating an individual quantum ...
Abstract: Dynamic simulation of materials is a promising application for near-term quantum computer...
We present an approach to gain detailed control on the quantum simulation of strongly correlated qua...
We propose a non-linear, hybrid quantum-classical scheme for simulating non-equilibrium dynamics of ...
The description of strongly-correlated quantum many-body systems far-from equilibrium is intrinsical...
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 study a proof-of-principle example of the recently proposed hybrid quantum-classical simulation o...
We present a numerical method to simulate the time evolution, according to a generic Hamiltonian mad...
Quantum circuits -- built from local unitary gates and local measurements -- are a new playground fo...
Quantum computation can proceed solely through single-qubit measurements on an appropriate quantum s...
Controlled quantum systems can be used to simulate the behaviour of strongly correlated systems. Thi...
Quantum simulation is the notion of experimentally controlling and manipulating physical quantum mec...
We show that a specific implementation of a unitary map on multiple qubits in an ion trap is physica...
We show how a quantum Ising spin chain in a time-dependent transverse magnetic field can be simulate...
In recent years, due to unprecedented success in controlling and manipulating an individual quantum ...
Abstract: Dynamic simulation of materials is a promising application for near-term quantum computer...
We present an approach to gain detailed control on the quantum simulation of strongly correlated qua...
We propose a non-linear, hybrid quantum-classical scheme for simulating non-equilibrium dynamics of ...
The description of strongly-correlated quantum many-body systems far-from equilibrium is intrinsical...
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 study a proof-of-principle example of the recently proposed hybrid quantum-classical simulation o...
We present a numerical method to simulate the time evolution, according to a generic Hamiltonian mad...
Quantum circuits -- built from local unitary gates and local measurements -- are a new playground fo...
Quantum computation can proceed solely through single-qubit measurements on an appropriate quantum s...
Controlled quantum systems can be used to simulate the behaviour of strongly correlated systems. Thi...
Quantum simulation is the notion of experimentally controlling and manipulating physical quantum mec...
We show that a specific implementation of a unitary map on multiple qubits in an ion trap is physica...
We show how a quantum Ising spin chain in a time-dependent transverse magnetic field can be simulate...
In recent years, due to unprecedented success in controlling and manipulating an individual quantum ...
Abstract: Dynamic simulation of materials is a promising application for near-term quantum computer...