Engineering, controlling, and simulating quantum dynamics is a strenuous task. However, these techniques are crucial to develop quantum technologies, preserve quantum properties, and engineer decoherence. Earlier results have demonstrated reservoir engineering, construction of a quantum simulator for Markovian open systems, and controlled transition from Markovian to non-Markovian regime. Dephasing is an ubiquitous mechanism to degrade the performance of quantum computers. However, all-purpose quantum simulator for generic dephasing is still missing. Here, we demonstrate full experimental control of dephasing allowing us to implement arbitrary decoherence dynamics of a qubit. As examples, we use a photon to simulate the dynamics of a qubit ...
Quantum simulation is a promising field for first applications of quantum computers. In the fi...
Manipulation of quantum interference requires that the system under control remains coherent, avoidi...
We propose dynamical control schemes for Hamiltonian simulation in many-body quantum systems that av...
Engineering, controlling, and simulating quantum dynamics is a strenuous task. However, these techni...
One of the most exciting potential applications of a quantum computer is the abilityto efficiently s...
Simulating charge and energy transfer in extended molecular networks requires an effective model to ...
Optical lattices can be used to simulate quantum baths and hence they can be of fundamental help to ...
Recent developments in practical quantum engineering and control techniques have allowed significant...
Optical lattices can be used to simulate quantum baths and hence they can be of fundamental help to ...
In the field of quantum information, a major challenge is to protect and shield quantum systems from...
Analog quantum simulators, which efficiently represent model systems, have the potential to provide ...
<p><strong>Figure 2.</strong> Fidelity evolution of the single-qutrit dephasing model under a 20 con...
In this thesis, we discuss the possibilities for suppression of decoherence, the loss of purity in a...
Quantum information science is a rapidly growing research area for that it provides new insights to ...
Abstract. We propose dynamical control schemes for Hamiltonian simulation in many-body quantum syste...
Quantum simulation is a promising field for first applications of quantum computers. In the fi...
Manipulation of quantum interference requires that the system under control remains coherent, avoidi...
We propose dynamical control schemes for Hamiltonian simulation in many-body quantum systems that av...
Engineering, controlling, and simulating quantum dynamics is a strenuous task. However, these techni...
One of the most exciting potential applications of a quantum computer is the abilityto efficiently s...
Simulating charge and energy transfer in extended molecular networks requires an effective model to ...
Optical lattices can be used to simulate quantum baths and hence they can be of fundamental help to ...
Recent developments in practical quantum engineering and control techniques have allowed significant...
Optical lattices can be used to simulate quantum baths and hence they can be of fundamental help to ...
In the field of quantum information, a major challenge is to protect and shield quantum systems from...
Analog quantum simulators, which efficiently represent model systems, have the potential to provide ...
<p><strong>Figure 2.</strong> Fidelity evolution of the single-qutrit dephasing model under a 20 con...
In this thesis, we discuss the possibilities for suppression of decoherence, the loss of purity in a...
Quantum information science is a rapidly growing research area for that it provides new insights to ...
Abstract. We propose dynamical control schemes for Hamiltonian simulation in many-body quantum syste...
Quantum simulation is a promising field for first applications of quantum computers. In the fi...
Manipulation of quantum interference requires that the system under control remains coherent, avoidi...
We propose dynamical control schemes for Hamiltonian simulation in many-body quantum systems that av...