We develop new protocols for high-fidelity single qubit gates that exploit and extend theoretical ideas for accelerated adiabatic evolution. Our protocols are compatible with qubit architectures with highly isolated logical states, where traditional approaches are problematic; a prime example are superconducting fluxonium qubits. By using an accelerated adiabatic protocol we can enforce the desired adiabatic evolution while having gate times that are comparable to the inverse adiabatic energy gap (a scale that is ultimately set by the amount of power used in the control pulses). By modelling the effects of decoherence, we explore the tradeoff between speed and robustness that is inherent to shortcuts-to-adiabaticity approaches
We work out the theory and applications of a fast quasiadiabatic approach to speed up slow adiabatic...
We propose a simple feedback-control scheme for adiabatic quantum computation with superconducting f...
The difficulty in combining high fidelity with fast operation times and robustness against sources o...
We introduce a method to speed up adiabatic protocols for creating entanglement between two qubits d...
Shortcuts to adiabaticity (STA) are fast methods to realize the same final state evolution of quantu...
Quantum adiabatic transfer is widely used in quantum computation and quantum simulation. However, th...
Adiabatic protocols are employed across a variety of quantum technologies, from implementing state p...
We propose how to engineer the longitudinal coupling to accelerate the measurement of a qubit longit...
Quantum information processing requires fast manipulations of quantum systems in order to overcome d...
In the quantum-computation scenario, geometric phase-gates are becoming increasingly attractive for ...
Quantum computing seeks to use the powers of quantum mechanics to accomplish tasks that classical co...
Accurate and efficient quantum control in the presence of constraints and decoherence is a requireme...
The quantum perceptron is a fundamental building block for quantum machine learning. This is a multi...
SUMMARY The ability to accurately control a quantum system is a fundamental requirement in many ar...
Adiabatic and superadiabatic controlled evolutions are used as universal models for quantum computat...
We work out the theory and applications of a fast quasiadiabatic approach to speed up slow adiabatic...
We propose a simple feedback-control scheme for adiabatic quantum computation with superconducting f...
The difficulty in combining high fidelity with fast operation times and robustness against sources o...
We introduce a method to speed up adiabatic protocols for creating entanglement between two qubits d...
Shortcuts to adiabaticity (STA) are fast methods to realize the same final state evolution of quantu...
Quantum adiabatic transfer is widely used in quantum computation and quantum simulation. However, th...
Adiabatic protocols are employed across a variety of quantum technologies, from implementing state p...
We propose how to engineer the longitudinal coupling to accelerate the measurement of a qubit longit...
Quantum information processing requires fast manipulations of quantum systems in order to overcome d...
In the quantum-computation scenario, geometric phase-gates are becoming increasingly attractive for ...
Quantum computing seeks to use the powers of quantum mechanics to accomplish tasks that classical co...
Accurate and efficient quantum control in the presence of constraints and decoherence is a requireme...
The quantum perceptron is a fundamental building block for quantum machine learning. This is a multi...
SUMMARY The ability to accurately control a quantum system is a fundamental requirement in many ar...
Adiabatic and superadiabatic controlled evolutions are used as universal models for quantum computat...
We work out the theory and applications of a fast quasiadiabatic approach to speed up slow adiabatic...
We propose a simple feedback-control scheme for adiabatic quantum computation with superconducting f...
The difficulty in combining high fidelity with fast operation times and robustness against sources o...