Variational quantum algorithms (VQAs) hold great potentials for near-term applications and are promising to achieve quantum advantage on practical tasks. However, VQAs suffer from severe barren plateau problem as well as have a large probability of being trapped in local minima. In this Letter, we propose a novel training algorithm with random quantum gate activation for VQAs to efficiently address these two issues. This new algorithm processes effectively much fewer training parameters than the conventional plain optimization strategy, which efficiently mitigates barren plateaus with the same expressive capability. Additionally, by randomly adding two-qubit gates to the circuit ansatz, the optimization trajectories can escape from local mi...
Quantum algorithm development is a famously difficult problem. The lack of intuition concerning the...
Variational Quantum Algorithms (VQAs) have gained significant attention as a potential solution for ...
We analyze the barren plateau phenomenon in the variational optimization of quantum circuits inspire...
Variational quantum algorithms (VQAs) are expected to be a path to quantum advantages on noisy inter...
We introduce a general framework called neural network (NN) encoded variational quantum algorithms (...
Variational quantum algorithms are being explored as a promising approach to finding useful applicat...
Variational quantum algorithms (VQAs) are widely applied in the noisy intermediate-scale quantum era...
Variational quantum algorithms (VQAs) are promising methods to demonstrate quantum advantage on near...
Variational quantum algorithms (VQAs) utilize a hybrid quantum-classical architecture to recast prob...
Variational Quantum Algorithms (VQA) have been identified as a promising candidate for the demonstra...
The exponential run time of quantum simulators on classical machines and long queue depths and high ...
For a large number of tasks, quantum computing demonstrates the potential for exponential accelerati...
Reinforcement learning is a growing field in AI with a lot of potential. Intelligent behavior is lea...
The QAOA is a variational quantum algorithm, where a quantum computer implements a variational ansat...
The fidelity of a variational quantum circuit state prepared within stochastic gradient descent depe...
Quantum algorithm development is a famously difficult problem. The lack of intuition concerning the...
Variational Quantum Algorithms (VQAs) have gained significant attention as a potential solution for ...
We analyze the barren plateau phenomenon in the variational optimization of quantum circuits inspire...
Variational quantum algorithms (VQAs) are expected to be a path to quantum advantages on noisy inter...
We introduce a general framework called neural network (NN) encoded variational quantum algorithms (...
Variational quantum algorithms are being explored as a promising approach to finding useful applicat...
Variational quantum algorithms (VQAs) are widely applied in the noisy intermediate-scale quantum era...
Variational quantum algorithms (VQAs) are promising methods to demonstrate quantum advantage on near...
Variational quantum algorithms (VQAs) utilize a hybrid quantum-classical architecture to recast prob...
Variational Quantum Algorithms (VQA) have been identified as a promising candidate for the demonstra...
The exponential run time of quantum simulators on classical machines and long queue depths and high ...
For a large number of tasks, quantum computing demonstrates the potential for exponential accelerati...
Reinforcement learning is a growing field in AI with a lot of potential. Intelligent behavior is lea...
The QAOA is a variational quantum algorithm, where a quantum computer implements a variational ansat...
The fidelity of a variational quantum circuit state prepared within stochastic gradient descent depe...
Quantum algorithm development is a famously difficult problem. The lack of intuition concerning the...
Variational Quantum Algorithms (VQAs) have gained significant attention as a potential solution for ...
We analyze the barren plateau phenomenon in the variational optimization of quantum circuits inspire...