2025
Phonon-induced non-equilibrium dynamics of a single solid-state defect
Ariel Norambuena, Diego Tancara, Vicente Chomalí-Castro, and Daniel Castillo, arXiv:2411.09825 (2025)
Entropy, entanglement and susceptibility of three qubits near the quantum criticality
Bastian Castorene, Francisco J. Peña, Ariel Norambuena, Sergio E. Ulloa, Cristobal Araya, and Patricio Vargas, arXiv:2410.16133 (2025).
2024
Physics-informed neural networks for quantum control
Ariel Norambuena, Marios Mattheakis, Francisco J. González, and Raúl Coto, Phys. Rev. Lett. 132, 010801 (2024).
Quantum kernels for classifying dynamical singularities in a multiqubit system
Diego Tancara, José Fredes, and Ariel Norambuena, Quantum Sci. Technol. 9. 035046 (2024).
Effects of magnetic anisotropy on three-qubit antiferromagnetic thermal machines
Bastián Castorene, Francisco J. Peña, Ariel Norambuena, Sergio E. Ulloa, Cristóbal Araya, and Patricio Vargas, Phys. Rev. E 110, 044135 (2024).
Emerging double power-law through dynamical complex networks in motility-induced phase separation in Active Brownian Particles
Italo Salas, Francisca Guzmán-Lastra, Denisse Pastén, and Ariel Norambuena, arXiv:2402.03228 (2024).
2023
Kernel-based quantum regressor models learn non-Markovianity
Diego Tancara, Hossein T. Dinani, Ariel Norambuena, Felipe F. Fanchini, and Raúl Coto, Phys. Rev. A 107, 022402 (2023)
Engineering non-Markovianity from defect-phonon interactions
Francisco J. González, Diego Tancara, Hossein T. Dinani, Raúl Coto, and Ariel Norambuena, New J. Phys. 25, 043004 (2023)
Temperature-dependent spin-lattice relaxation of the nitrogen-vacancy spin triplet in diamond
M. C. Cambria, A. Norambuena, H. T. Dinani, G. Thiering, A. Gardill, I. Kemeny, Y. Li, V. Lordi, A. Gali, J. R. Maze, S. Kolkowitz, Phys. Rev. Lett. 130, 256903 (2023).
Estimating the degree of non-Markovianity using variational quantum circuits
Hossein T. Dinani, Diego Tancara, Felipe F. Fanchini, Ariel Norambuena, and Raul Coto, Quantum Mach. Intell. 5, 29 (2023).
Sequential epidemic spread between agglomerates of self-propelled agents in one dimension
Pablo de Castro, Felipe Urbina, Ariel Norambuena, and Francisca Guzmán-Lastra, Phys. Rev. E 108, 044104 (2023).
Physically motivated analytical expression for the temperature dependence of the zero-field splitting of the nitrogen-vacancy center in diamond
M. C. Cambria, G. Thiering, A. Norambuena, H. T. Dinani, A. Gardill, I. Kemeny, V. Lordi, A. Gali, J. R. Maze, and S. Kolkowitz, Phys. Rev. B 108, L180102 (2023).
Magnetic Stirling cycle for qubits with anisotropy near the quantum critical point
Cristóbal Araya, Francisco J. Peña, Ariel Norambuena, Bastián Castorene, and Patricio Vargas, Technologies 11, 169 (2023)
2022
Dynamical quantum phase transition in diamond: Applications in quantum metrology
Francisco J. González, Ariel Norambuena, and Raúl Coto, Phys. Rev. B 106, 014313 (2022)
Polariton-based quantum memristors
Ariel Norambuena, Felipe Torres, Massimiliano Di Venta, and Raúl Coto, Phys. Rev. Applied 17, 024056 (2022)
2021
Probabilistic magnetometry with a two-spin system in diamond
Raúl Coto, Hossein T. Dinani, Ariel Norambuena, Mo Chen, and Jerónimo R. Maze, Quantum Sci. Technol. 6 035011 (2021)
Steering interchange of polariton branches via coherent and incoherent dynamics
Diego Tancara, Ariel Norambuena, Rubén Peña, Guillermo Romero, Felipe Torres, and Raúl Coto, Phys. Rev. A 103, 053708 (2021)
Estimating the degree of non-Markovianity using machine learning
Felipe F. Fanchini, Göktuğ Karpat, Daniel Z. Rossatto, Ariel Norambuena, and Raúl Coto, Phys. Rev. A 103, 022425 (2021)
First-Principles Identification of Single Photon Emitters Based on Carbon Clusters in Hexagonal Boron Nitride
Cesar Jara, Tomáš Rauch, Silvana Botti, Miguel A. L. Marques, Ariel Norambuena, Raul Coto, J. E. Castellanos-Águila, Jeronimo R. Maze, and Francisco Munoz, J. Phys. Chem. A 2021, 125, 6, 1325–1335 (2021).
Probing Charge Dynamics in Diamond with an Individual Color Center
Aedan Gardill, Ishita Kemeny, Matthew C. Cambria, Yanfei Li, Hossein T. Dinani, Ariel Norambuena, Jeronimo R. Maze, Vincenzo Lordi, and Shimon Kolkowitz, Nano Lett. 2021, 21, 16, 6960–6966 (2021)
State-dependent phonon-limited spin relaxation of nitrogen-vacancy centers
M. C. Cambria, A. Gardill, Y. Li, A. Norambuena, J. R. Maze, and S. Kolkowitz, Phys. Rev. Research 3, 013123 (2021)
2020
Understanding contagion dynamics through microscopic processes in active Brownian particles
Ariel Norambuena, Felipe Valencia, and Francisca Guzmán-Lastra, Sci Rep 10, 20845 (2020).
From the open generalized Heisenberg model to the Landau-Lifshitz equation
Ariel Norambuena, Andrés Franco, and Raúl Coto, New J. Phys. 22 103029 (2020)
Coding closed and open quantum systems in MATLAB: applications in quantum optics and condensed matter
Ariel Norambuena, Diego Tancara, and Raúl Coto, Eur. J. Phys. 41 045404 (2020)
Codes: https://github.com/Ariel-Norambuena/Quantum-Dynamics-in-MATLAB
Effect of phonons on the electron spin resonance absorption spectrum
Ariel Norambuena, Alejandro Jimenez, Christoph Becher, and Jerónimo R. Maze, New J. Phys. 22 073068 (2020)
Quantifying phonon-induced non-Markovianity in color centers in diamond
Ariel Norambuena, Jerónimo R. Maze, Peter Rabl, and Raúl Coto, Phys. Rev. A 101, 022110 (2020)
2018
Spin-lattice relaxation of individual solid-state spins
A. Norambuena, E. Muñoz, H. T. Dinani, A. Jarmola, P. Maletinsky, D. Budker, and J. R. Maze, Phys. Rev. B 97, 094304 (2018)
2016
Cooling phonons with phonons: Acoustic reservoir engineering with silicon-vacancy centers in diamond
K. V. Kepesidis, M.-A. Lemonde, A. Norambuena, J. R. Maze, and P. Rabl, Phys. Rev. B 94, 214115 (2016)
Microscopic modeling of the effect of phonons on the optical properties of solid-state emitters
Ariel Norambuena, Sebastián A. Reyes, José Mejía-Lopéz, Adam Gali, and Jerónimo R. Maze, Phys. Phys. Rev. B 94, 134305 (2016)