We introduce a method to speed up adiabatic protocols for creating entanglement between two qubits dispersively coupled to a transmission line, while keeping fidelities high and maintaining robustness to control errors. The method takes genuinely adiabatic sweeps, ranging from a simple Landau-Zener drive to boundary cancellation methods and local adiabatic drivings, and adds fast oscillations to speed up the protocol while canceling unwanted transitions. We compare our protocol with existing adiabatic methods in a state-of-the-art parameter range and show substantial gains. Numerical simulations emphasize that this strategy is efficient also beyond the rotating-wave approximation and that the method is robust against random static biases in...
We study the robustness of different sweep protocols for accelerated adiabaticity following in the p...
We investigate the performance of superconducting flux qubits for the adiabatic quantum simulation o...
This work proposes and analyzes the adiabatic motion of fault tolerant qubits in twosystems as candi...
We introduce a method to speed up adiabatic protocols for creating entanglement between two qubits d...
We propose a protocol that achieves fast adiabatic transfer between two orthogonal states of a qubit...
Adiabatic protocols are employed across a variety of quantum technologies, from implementing state p...
We develop new protocols for high-fidelity single qubit gates that exploit and extend theoretical id...
Effective quantum communication between remote quantum nodes requires high fidelity quantum state tr...
Quantum information processing requires fast manipulations of quantum systems in order to overcome d...
Population-transfer schemes are commonly used to convert information robustly stored in some quantum...
Quantum adiabatic transfer is widely used in quantum computation and quantum simulation. However, th...
We investigate ways to optimize adiabaticity and diabaticity in the Landau-Zener model with nonunifo...
Ultrastrongly coupled quantum hardware may increase the speed of quantum state processing in distrib...
Adiabatic protocols are employed across a variety of quantum technologies, from implementing state p...
We propose a method to produce fast transitionless dynamics for finite-dimensional quantum systems w...
We study the robustness of different sweep protocols for accelerated adiabaticity following in the p...
We investigate the performance of superconducting flux qubits for the adiabatic quantum simulation o...
This work proposes and analyzes the adiabatic motion of fault tolerant qubits in twosystems as candi...
We introduce a method to speed up adiabatic protocols for creating entanglement between two qubits d...
We propose a protocol that achieves fast adiabatic transfer between two orthogonal states of a qubit...
Adiabatic protocols are employed across a variety of quantum technologies, from implementing state p...
We develop new protocols for high-fidelity single qubit gates that exploit and extend theoretical id...
Effective quantum communication between remote quantum nodes requires high fidelity quantum state tr...
Quantum information processing requires fast manipulations of quantum systems in order to overcome d...
Population-transfer schemes are commonly used to convert information robustly stored in some quantum...
Quantum adiabatic transfer is widely used in quantum computation and quantum simulation. However, th...
We investigate ways to optimize adiabaticity and diabaticity in the Landau-Zener model with nonunifo...
Ultrastrongly coupled quantum hardware may increase the speed of quantum state processing in distrib...
Adiabatic protocols are employed across a variety of quantum technologies, from implementing state p...
We propose a method to produce fast transitionless dynamics for finite-dimensional quantum systems w...
We study the robustness of different sweep protocols for accelerated adiabaticity following in the p...
We investigate the performance of superconducting flux qubits for the adiabatic quantum simulation o...
This work proposes and analyzes the adiabatic motion of fault tolerant qubits in twosystems as candi...