Publications
Peer-reviewed journal publications, listed from most recent to earliest.
A complete list with preprints may be found on Google Scholar

2026
45. R. A. Fontenele, N. C. Costa, T. Paiva, and R. R. dos Santos, “Effects of next-nearest neighbor hopping on the pairing and critical temperatures of the attractive Hubbard model on a square lattice,” Phys. Rev. B 113, 104519 (2026).
44. J. Faúndez, R. A. Fontenele, S. A. Sousa-Júnior, F. F. Assaad, and N. C. Costa, “Two-dimensional Rashba-Holstein model: Quantum Monte Carlo approach,” Phys. Rev. B 113, 155109 (2026).
43. T. F. Macedo, J. Faúndez, A. S. Coelho, C. Lewenkopf, M. S. Ferreira, F. A. Pinheiro, and N. C. Costa, “Inverse determination of light-matter coupling in disordered systems from transmittance spectra,” Phys. Rev. B 113, 214202 (2026).
2025
42. C. A. Aguirre, J. Faúndez, P. Díaz, D. Laroze, A. S. Mosquera, N. C. Costa, and J. Barba-Ortega, “Controlling vortex matter via a superconducting nano-bridge sample,” Appl. Phys. A 131, 501 (2025).
41. W. Kennedy, S. A. Sousa-Júnior, N. C. Costa, and R. R. dos Santos, “Extended Hubbard model on a honeycomb lattice,” Phys. Rev. B 111, 155118 (2025).
40. L. O. Lima, J. Faúndez, N. C. Costa, and R. R. dos Santos, “Finite temperatures and flat bands: The Hubbard model on three-dimensional Lieb lattices,” Phys. Rev. B 112, 125119 (2025).
39. T. F. Macedo, J. Faúndez, R. R. dos Santos, N. C. Costa, and F. A. Pinheiro, “Multifractal critical phase driven by coupling quasiperiodic systems to electromagnetic cavities,” Phys. Rev. B 112, 174202 (2025).
2024
38. R. A. Fontenele, S. A. Sousa-Júnior, T. P. Cysne, and N. C. Costa, “The impact of Rashba spin-orbit coupling in charge-ordered systems,” J. Phys.: Condens. Matter 36, 225601 (2024).
37. S. A. Sousa-Júnior, N. C. Costa, and R. R. dos Santos, “Half-filled extended Hubbard model on a square lattice: Phase boundaries from determinant quantum Monte Carlo simulations,” Phys. Rev. B 109, 165102 (2024).
36. R. R. dos Santos, L. A. Oliveira, and N. C. Costa, “Four interacting spins: Addition of angular momenta, spin-spin correlation functions, and entanglement,” Am. J. Phys. 92, 606-615 (2024).
35. R. A. Fontenele, N. C. Costa, T. Paiva, and R. R. dos Santos, “Increasing superconducting by layering in the attractive Hubbard model,” Phys. Rev. A 110, 053315 (2024).
2023
34. R. A. Fontenele, N. Vasconcelos, N. C. Costa, T. Paiva, and R. R. dos Santos, “Second-Neighbor Hopping Effects in the Two-Dimensional Attractive Hubbard Model,” Condens. Matter 8, 11 (2023).
33. A. R. Medeiros-Silva, N. C. Costa, and T. Paiva, “Thermodynamic, magnetic, and transport properties of the repulsive Hubbard model on the kagome lattice,” Phys. Rev. B 107, 035134 (2023).
32. S. A. Sousa-Júnior, R. R. dos Santos, and N. C. Costa, “Magnetic impurities in a charge-ordered background,” Phys. Rev. B 107, 075140 (2023).
31. N. Lopes, D. Reyes, N. C. Costa, M. A. Continentino, and C. Thomas, “Incommensurate charge density wave in multiband intermetallic systems exhibiting competing orders,” Phys. Rev. B 107, 205141 (2023).
30. W. C. F. Silva, M. V. Araujo, S. Roy, A. Samanta, N. C. Costa, N. Trivedi, and T. Paiva, “Effects of strong electronic interactions on the thermopower properties of the repulsive Hubbard model,” Phys. Rev. B 108, 075101 (2023).
29. W. S. Oliveira, T. Paiva, R. T. Scalettar, and N. C. Costa, “Magnetic and singlet phases in the three-dimensional periodic Anderson Model,” Phys. Rev. B 108, 115121 (2023).
28. L. O. Lima, A. R. Medeiros-Silva, R. R. dos Santos, T. Paiva, and N. C. Costa, “Magnetism and metal-insulator transitions in the anisotropic kagome lattice,” Phys. Rev. B 108, 235163 (2023).
27. J. H. Warnes, F. M. de Paula, N. C. Costa, and O. P. de Sá Neto, “Dynamics of quantum coherence in the Jaynes-Cummings model with quenched disorder,” Phys. Open 15, 100146 (2023).
2022
26. L. O. A. Azevedo, O. S. Ribeiro, N. C. Costa, E. H. C. P. Sinnecker, and M. Gandelman, “Revisitando o Experimento de Eratóstenes: medida do raio de Terra,” Rev. Bras. Ensino Fís. 44, e20210354 (2022).
25. R. A. Fontenele, N. C. Costa, R. R. dos Santos, and T. Paiva, “Two-dimensional attractive Hubbard model and the BCS-BEC crossover,” Phys. Rev. B 105, 184502 (2022).
24. S. M. V. S. Rosa, J. P. de Lima, N. C. Costa, and L. L. Gonçalves, “The transverse field XY model on the diamond chain,” J. Magn. Magn. Mater. 557, 169484 (2022).
23. M. V. Araújo, J. P. de Lima, S. Sorella, and N. C. Costa, “Two-dimensional t − t – Holstein model,” Phys. Rev. B 105, 165103 (2022).
22. W. Kennedy, S. A. Sousa-Júnior, N. C. Costa, and R. R. dos Santos, “Magnetism and metal-insulator transitions in the Rashba-Hubbard model,” Phys. Rev. B 106, 165121 (2022).
21. A. Tirelli, D. O. Carvalho, L. A. Oliveira, J. P. de Lima, N. C. Costa, and R. R. dos Santos, “Unsupervised machine learning approaches to the q-state Potts model,” Eur. Phys. J. B 95, 189 (2022).
20. E. Baum, A. Broman, T. Clarke, N. C. Costa, J. Mucciaccio, A. Yue, Y. Zhang, V. Norman, J. Patton, M. Radulaski, and R. T. Scalettar, “Effect of emitters on quantum state transfer in coupled cavity arrays,” Phys. Rev. B 105, 195429 (2022).
2021
19. B. Xiao, N. C. Costa, E. Khatami, G. Batrouni, and R. T. Scalettar, “Charge density wave and superconductivity in the disordered Holstein model,” Phys. Rev. B 103, L060501 (2021).
18. N. C. Costa, K. Seki, and S. Sorella, “Magnetism and Charge Order in the Honeycomb Lattice,” Phys. Rev. Lett. 126, 107205 (2021).
17. W. S. Oliveira, J. P. de Lima, N. C. Costa, and R. R. dos Santos, “Percolation on Lieb lattices,” Phys. Rev. E 104, 064122 (2021).
16. A. Tirelli and N. C. Costa, “Learning quantum phase transitions through topological data analysis,” Phys. Rev. B 104, 235146 (2021).
2020
15. L. Oliveira-Lima, N. C. Costa, J. P. de Lima, R. T. Scalettar, and R. R. dos Santos, “Dynamical resilience to disorder: The dilute Hubbard model on the Lieb lattice,” Phys. Rev. B 101, 165109 (2020).
14. N. C. Costa, K. Seki, S. Yunoki, and S. Sorella, “Phase diagram of the two-dimensional Hubbard-Holstein model,” Commun. Phys. 3, 80 (2020).
13. S. A. Sousa-Júnior, J. P. de Lima, N. C. Costa, and R. R. dos Santos, “Superconducting Kondo phase in an orbitally separated bilayer,” Phys. Rev. Research 2, 033168 (2020).
2019
12. Y. X. Zhang, W. T. Chiu, N. C. Costa, G. G. Batrouni, and R. T. Scalettar, “Charge Order in the Holstein Model on a Honeycomb Lattice,” Phys. Rev. Lett. 122, 077602 (2019).
11. N. C. Costa, T. Mendes-Santos, T. Paiva, N. J. Curro, R. R. dos Santos, and R. T. Scalettar, “Coherence temperature in the diluted periodic Anderson model,” Phys. Rev. B 99, 195116 (2019).
10. L. Zhang, T. Ma, N. C. Costa, R. R. dos Santos, and R. T. Scalettar, “Determinant quantum Monte Carlo study of exhaustion in the periodic Anderson model,” Phys. Rev. B 99, 195147 (2019).
9. B. Cohen-Stead, N. C. Costa, E. Khatami, and R. T. Scalettar, “Effect of strain on charge density wave order in the Holstein model,” Phys. Rev. B 100, 045125 (2019).
2018
8. N. C. Costa, M. V. Araújo, J. P. Lima, T. Paiva, R. R. dos Santos, and R. T. Scalettar, “Compressible ferrimagnetism in the depleted periodic Anderson model,” Phys. Rev. B 97, 085123 (2018).
7. N. C. Costa, T. Blommel, W. T. Chiu, G. Batrouni, and R. T. Scalettar, “Phonon Dispersion and the Competition between Pairing and Charge Order,” Phys. Rev. Lett. 120, 187003 (2018).
2017
6. N. C. Costa, J. P. Lima, and R. R. dos Santos, “Spiral magnetic phases on the Kondo Lattice Model: A Hartree-Fock approach,” J. Magn. Magn. Mater. 423, 74-83 (2017).
5. T. Mendes-Santos, N. C. Costa, G. Batrouni, N. Curro, R. R. dos Santos, T. Paiva, and R. T. Scalettar, “Impurities near an antiferromagnetic-singlet quantum critical point,” Phys. Rev. B 95, 054419 (2017).
4. H. S. Sousa, J. P. de Lima, N. C. Costa, M. L. Lyra, and L. L. Gonçalves, “A mean field study of quantum transitions in a spin-1/2 XY chain with a transverse long-range interaction,” J. Magn. Magn. Mater. 441, 482-489 (2017).
3. N. C. Costa, W. Hu, Z. J. Bai, R. T. Scalettar, and R. R. P. Singh, “Principal component analysis for fermionic critical points,” Phys. Rev. B 96, 195138 (2017).
2. N. C. Costa, J. P. de Lima, T. Paiva, M. Elmassalami, and R. R. dos Santos, “A mean-field approach to Kondo-attractive-Hubbard model,” J. Phys.: Condens. Matter 30, 045602 (2017).
2016
1. N. C. Costa, T. Mendes-Santos, T. Paiva, R. R. dos Santos, and R. T. Scalettar, “Ferromagnetism beyond Lieb’s theorem,” Phys. Rev. B 94, 155107 (2016).