Time-optimal control theory provides recipes to achieve quantum operations with high fidelity and speed, as required in quantum technologies such as quantum sensing and computation. While technical advances have achieved the ultrastrong driving regime in many physical systems, these capabilities have yet to be fully exploited for the precise control of quantum systems, as other limitations, such as the generation of higher harmonics or the finite response time of the control apparatus, prevent the implementation of theoretical time-optimal control. Here we present a method to achieve time-optimal control of qubit systems that can take advantage of fast driving beyond the rotating wave approximation. We exploit results from time-optimal cont...
Fast and accurate two-qubit gates are a key requirement to perform complex algorithms on current qua...
Fastness and robustness are both critical in the implementation of high-fidelity gates for quantum c...
Recently there has been a lot of interest in the potential applications of performing computations o...
Optimal control theory is a promising candidate for a drastic improvement of the performance of qua...
Optimal control theory is a promising candidate for a drastic improvement of the performance of quan...
We study time-optimal protocols for controlling quantum systems which show several avoided level cro...
Quantum control is an important prerequisite for quantum devices [1]. A major obstacle is the fact t...
We present an investigation of optimal control techniques applied to computational and transport pro...
In this paper, we demonstrate that optimal control algorithms can be used to speed up the implementa...
We combine a quantum dynamical propagator that explicitly accounts for quantum mechanical time order...
We apply an extension of the Pontryagin Maximum Principle to derive time-optimal controls of two-lev...
Indirect control of qubits by a quantum actuator has been proposed as an appealing strategy to manip...
International audienceThe ability of pulse-shaping devices to generate accurately quantum optimal co...
The quantum navigation problem of finding the time-optimal control Hamiltonian that transports a giv...
SUMMARY The ability to accurately control a quantum system is a fundamental requirement in many ar...
Fast and accurate two-qubit gates are a key requirement to perform complex algorithms on current qua...
Fastness and robustness are both critical in the implementation of high-fidelity gates for quantum c...
Recently there has been a lot of interest in the potential applications of performing computations o...
Optimal control theory is a promising candidate for a drastic improvement of the performance of qua...
Optimal control theory is a promising candidate for a drastic improvement of the performance of quan...
We study time-optimal protocols for controlling quantum systems which show several avoided level cro...
Quantum control is an important prerequisite for quantum devices [1]. A major obstacle is the fact t...
We present an investigation of optimal control techniques applied to computational and transport pro...
In this paper, we demonstrate that optimal control algorithms can be used to speed up the implementa...
We combine a quantum dynamical propagator that explicitly accounts for quantum mechanical time order...
We apply an extension of the Pontryagin Maximum Principle to derive time-optimal controls of two-lev...
Indirect control of qubits by a quantum actuator has been proposed as an appealing strategy to manip...
International audienceThe ability of pulse-shaping devices to generate accurately quantum optimal co...
The quantum navigation problem of finding the time-optimal control Hamiltonian that transports a giv...
SUMMARY The ability to accurately control a quantum system is a fundamental requirement in many ar...
Fast and accurate two-qubit gates are a key requirement to perform complex algorithms on current qua...
Fastness and robustness are both critical in the implementation of high-fidelity gates for quantum c...
Recently there has been a lot of interest in the potential applications of performing computations o...