ROMERO ROCHIN, VICTOR MANUEL
FÍSICA · Nivel 3
B. Sc. Physics, 1982, Universidad Autonoma Metropolitana, Mexico. Ph.D. Physics, 1988, Massachusetts Institute of Technology, USA. Posdoc, 1988-1990, The University of Chicago, USA Professor (Investigador Titular C) at Instituto de Física, UNAM, Mexico, since 1990.
B. Sc. Physics, 1982, Universidad Autonoma Metropolitana, Mexico.
Ph.D. Physics, 1988, Massachusetts Institute of Technology, USA.
Posdoc, 1988-1990, The University of Chicago, USA
Professor (Investigador Titular C) at Instituto de Física, UNAM, Mexico, since 1990.
Información*
| Nombre | VICTOR MANUEL ROMERO ROCHIN |
|---|---|
| Área | FÍSICO-MATEMÁTICAS Y CIENCIAS DE LA TIERRA |
| Campo | FÍSICA |
| Disciplina | FISICA ESTADÍSTICA |
| Especialidad | GASES ULTRAFRIOS |
| CVU | 10331 |
| Institución | |
|---|---|
| Dependencia | COORDINACION DE LA INVESTIGACION CIENTIFICA |
| Entidad | CIUDAD DE MEXICO |
| Nivel | 3 |
| Vigencia | Inicio: 01/01/2022 |
| Fin: 31/12/2031 |
* Información del primer trimestre de 2026.
Fuente: SECIHTI.
Publicaciones ORCID
- 2026
- Mean-field behavior of the finite size Ising model near its critical point Physica A: Statistical Mechanics and its Applications
- 2024
- 2D Skyrmion topological charge of spin textures with arbitrary boundary conditions: a two-component spinorial BEC as a case study New Journal of Physics
- Critical exponents and fluctuations at BEC in a 2D harmonically trapped ideal gas Journal of Physics B: Atomic, Molecular and Optical Physics
- 2023
- Potential and Feshbach s-wave resonances in coupled atomic collision channels European Journal of Physics
- Universal correlations along the BEC-BCS crossover New Journal of Physics
- Carnot Cycles in a Harmonically Confined Ultracold Gas across Bose–Einstein Condensation Entropy
- 2022
- Density correlation functions and the spatial structure of the two-dimensional BEC-BCS crossover Physical Review A
- 2021
- Thermodynamic Derivation of Scaling at the Liquid–Vapor Critical Point Entropy
- 2020
- Intrinsic Decoherence and Recurrences in a Large Ferromagnetic <i>F</i>=1 Spinor Bose–Einstein Condensate Symmetry
- Derivation of the Critical Point Scaling Hypothesis Using Thermodynamics Only Entropy