Grams, G.; Shchechilin, N.N.; Diverrès, T.; Fantina, A.F.; Chamel, N.; Gulminelli, F.
Neutron Star Inner Crust at Finite Temperatures: A Comparison Between Compressible Liquid Drop and Extended Thomas–Fermi Approaches. Universe 2025, 11, 172.
https://doi.org/10.3390/universe11060172
AMA Style
Grams G, Shchechilin NN, Diverrès T, Fantina AF, Chamel N, Gulminelli F.
Neutron Star Inner Crust at Finite Temperatures: A Comparison Between Compressible Liquid Drop and Extended Thomas–Fermi Approaches. Universe. 2025; 11(6):172.
https://doi.org/10.3390/universe11060172
Chicago/Turabian Style
Grams, Guilherme, Nikolai N. Shchechilin, Théau Diverrès, Anthea F. Fantina, Nicolas Chamel, and Francesca Gulminelli.
2025. "Neutron Star Inner Crust at Finite Temperatures: A Comparison Between Compressible Liquid Drop and Extended Thomas–Fermi Approaches" Universe 11, no. 6: 172.
https://doi.org/10.3390/universe11060172
APA Style
Grams, G., Shchechilin, N. N., Diverrès, T., Fantina, A. F., Chamel, N., & Gulminelli, F.
(2025). Neutron Star Inner Crust at Finite Temperatures: A Comparison Between Compressible Liquid Drop and Extended Thomas–Fermi Approaches. Universe, 11(6), 172.
https://doi.org/10.3390/universe11060172