The quantum perceptron is a fundamental building block for quantum machine learning. This is a multidisciplinary field that incorporates abilities of quantum computing, such as state superposition and entanglement, to classical machine learning schemes. Motivated by the techniques of shortcuts to adiabaticity, we propose a speed-up quantum perceptron where a control field on the perceptron is inversely engineered leading to a rapid nonlinear response with a sigmoid activation function. This results in faster overall perceptron performance compared to quasi-adiabatic protocols, as well as in enhanced robustness against imperfections in the controls.We acknowledge financial support from Spanish Government via PGC2018-095113-B-I00 (MCIU/AEI/FE...
Quantum control methods, like rapid adiabatic passage, stimulated Raman adiabatic passage, shortcuts...
We introduce a method to speed up adiabatic protocols for creating entanglement between two qubits d...
The control and manipulation of quantum systems without excitation are challenging, due to the compl...
The quantum perceptron is a fundamental building block for quantum machine learning. This is a multi...
We demonstrate that it is possible to implement a quantum perceptron with a sigmoid activation funct...
The utility of classical neural networks as universal approximators suggests that their quantum anal...
The training of neural networks (NNs) is a computationally intensive task requiring significant time...
We demonstrate that it is possible to implement a quantum perceptron with a sigmoid activation funct...
We develop new protocols for high-fidelity single qubit gates that exploit and extend theoretical id...
We propose how to engineer the longitudinal coupling to accelerate the measurement of a qubit longit...
19 p.We examine the stability versus different types of perturbations of recently proposed shortcuts...
Shortcuts to adiabaticity (STA) are fast methods to realize the same final state evolution of quantu...
Shortcuts to adiabaticity (STA) are fast routes to the final results of slow, adiabatic changes of t...
Accurate and efficient quantum control in the presence of constraints and decoherence is a requireme...
The "fast-forward"approach by Masuda and Nakamura generates driving potentials to accelerate slow qu...
Quantum control methods, like rapid adiabatic passage, stimulated Raman adiabatic passage, shortcuts...
We introduce a method to speed up adiabatic protocols for creating entanglement between two qubits d...
The control and manipulation of quantum systems without excitation are challenging, due to the compl...
The quantum perceptron is a fundamental building block for quantum machine learning. This is a multi...
We demonstrate that it is possible to implement a quantum perceptron with a sigmoid activation funct...
The utility of classical neural networks as universal approximators suggests that their quantum anal...
The training of neural networks (NNs) is a computationally intensive task requiring significant time...
We demonstrate that it is possible to implement a quantum perceptron with a sigmoid activation funct...
We develop new protocols for high-fidelity single qubit gates that exploit and extend theoretical id...
We propose how to engineer the longitudinal coupling to accelerate the measurement of a qubit longit...
19 p.We examine the stability versus different types of perturbations of recently proposed shortcuts...
Shortcuts to adiabaticity (STA) are fast methods to realize the same final state evolution of quantu...
Shortcuts to adiabaticity (STA) are fast routes to the final results of slow, adiabatic changes of t...
Accurate and efficient quantum control in the presence of constraints and decoherence is a requireme...
The "fast-forward"approach by Masuda and Nakamura generates driving potentials to accelerate slow qu...
Quantum control methods, like rapid adiabatic passage, stimulated Raman adiabatic passage, shortcuts...
We introduce a method to speed up adiabatic protocols for creating entanglement between two qubits d...
The control and manipulation of quantum systems without excitation are challenging, due to the compl...