5 papers
Unveiling Semiclassical Structures in Quantum Chaotic Eigenstates Using Neural Networks
J. Montes, F. Borondo, Gabriel G. Carlo
Physics-informed neural networks and neural quantum states have consolidated a new paradigm to analyze and discover physical phenomena through constrained neural parametrizations.…
On the question of noise as a resource in quantum computing
J. Montes, F. Borondo, Gabriel G. Carlo
Noise is usually regarded as the main obstacle to achieving a scalable quantum advantage, but recent evidence in quantum reservoir computing [L. Domingo, F. Borondo, and G. G. Carl…
The simplest 2D quantum walk detects chaoticity
C. Alonso-Lobo, Gabriel G. Carlo, F. Borondo
Quantum walks are at present an active field of study in mathematics, with important applications in quantum information and statistical physics. In this paper, we determine the in…
Universal Configuration for Optimizing Complexity in Variational Distributed Quantum Circuits
J. Montes, F. Borondo, Gabriel G. Carlo
Distributed quantum computing represents at present one of the most promising approaches to scaling quantum processors. Current implementations typically partition circuits into mu…
Optimal multicore quantum computing with few interconnects
J. Montes, F. Borondo, Gabriel G. Carlo
Noisy intermediate-scale quantum processors have produced a quantum computation revolution in recent times. However, to make further advances new strategies to overcome the error r…