Quantum information processing requires fast manipulations of quantum systems in order to overcome dissipative effects. We propose a method to accelerate quantum dynamics and obtain a target state in a shorter time relative to unmodified dynamics, and apply the theory to a system consisting of two linearly coupled qubits. We extend the technique to accelerate quantum adiabatic evolution in order to rapidly generate a desired target state, thereby realizing a shortcut to adiabaticity. Further, we address experimental limitations to the rate of change of control parameters for quantum devices which often limit one’s ability to generate a desired target state with high fidelity. We show that an initial state following decelerated dynamics can ...
A fundamental requirement in quantum information processing and in many other areas of science is th...
peer reviewedFast nonadiabatic control protocols known as shortcuts to adiabaticity have found a ple...
Applying time-dependent driving is a basic way of quantum control. Driven systems show various dyna...
Abstract. Adiabatic quantum computation employs a slow change of a time-dependent control function (...
We propose a method to produce fast transitionless dynamics for finite-dimensional quantum systems w...
A universal scheme is introduced to speed up the dynamics of a driven open quantum system along a pr...
Adiabatic protocols are employed across a variety of quantum technologies, from implementing state p...
The ability to accurately control a quantum system is a fundamental requirement in many areas of mod...
peer reviewedA universal scheme is introduced to speed up the dynamics of a driven open quantum syst...
We develop new protocols for high-fidelity single qubit gates that exploit and extend theoretical id...
We introduce a method to speed up adiabatic protocols for creating entanglement between two qubits d...
We set out a general protocol for steering the state of a quantum system from an arbitrary initial s...
For adiabatic controls of quantum systems, the non-adiabatic transitions are reduced by increasing t...
Adiabatic protocols are employed across a variety of quantum technologies, from implementing state p...
A fundamental requirement in quantum information processing and in many other areas of science is th...
A fundamental requirement in quantum information processing and in many other areas of science is th...
peer reviewedFast nonadiabatic control protocols known as shortcuts to adiabaticity have found a ple...
Applying time-dependent driving is a basic way of quantum control. Driven systems show various dyna...
Abstract. Adiabatic quantum computation employs a slow change of a time-dependent control function (...
We propose a method to produce fast transitionless dynamics for finite-dimensional quantum systems w...
A universal scheme is introduced to speed up the dynamics of a driven open quantum system along a pr...
Adiabatic protocols are employed across a variety of quantum technologies, from implementing state p...
The ability to accurately control a quantum system is a fundamental requirement in many areas of mod...
peer reviewedA universal scheme is introduced to speed up the dynamics of a driven open quantum syst...
We develop new protocols for high-fidelity single qubit gates that exploit and extend theoretical id...
We introduce a method to speed up adiabatic protocols for creating entanglement between two qubits d...
We set out a general protocol for steering the state of a quantum system from an arbitrary initial s...
For adiabatic controls of quantum systems, the non-adiabatic transitions are reduced by increasing t...
Adiabatic protocols are employed across a variety of quantum technologies, from implementing state p...
A fundamental requirement in quantum information processing and in many other areas of science is th...
A fundamental requirement in quantum information processing and in many other areas of science is th...
peer reviewedFast nonadiabatic control protocols known as shortcuts to adiabaticity have found a ple...
Applying time-dependent driving is a basic way of quantum control. Driven systems show various dyna...