Theoretical & Mathematical Physics

Adrián M.
Escobar Ruiz

Associate Professor of Physics at Universidad Autónoma Metropolitana–Iztapalapa. My research connects symmetry, exact solvability, quantum confinement, nonlinear dynamics, and data-driven discovery.

SNII Level II · Coordinator, General Physics Core · Department of Physics, UAM-I

Adrián M. Escobar Ruiz working in his office at UAM-I

Mathematical physics · UAM-I · Mexico City

64

Peer-reviewed publications

SNII II

National research distinction

3

Completed M.Sc. supervisions

2026

Coordinator, General Physics Core

01 · Profile

Structure, symmetry, and computation as complementary ways of understanding physical systems.

I am a theoretical physicist working at the interface of mathematical physics, classical and quantum dynamics, atomic physics, and information-theoretic methods. My research develops analytical and computational tools for Hamiltonian systems, with emphasis on integrability and superintegrability, hidden algebraic structures, semiclassical phenomena, quantum systems in magnetic fields and spatial confinement, and data-driven reconstruction of nonlinear dynamics.

At UAM-I, I lead an independent research and mentoring program in which students participate directly in problem formulation, calculation, numerical analysis, scientific writing, and publication. This program extends the symmetry-based methods developed during my postdoctoral work at the University of Minnesota and the Centre de Recherches Mathématiques in Montréal.


Education

Ph.D. in Physics, UNAM
Honorable mention · 2014

International training

Minnesota · Montréal
2015–2019

Current appointment

Associate Professor D
UAM-I · since 2023

Portrait of Adrián M. Escobar Ruiz at UAM-I

Research and teaching are treated as a single academic practice: precise questions, transparent methods, and close scientific mentoring.

02 · Research

Exact structures.
Physical consequences.

Blackboard with calculations in mathematical physics

01

Integrability & superintegrability

Higher-order constants of motion, polynomial algebras, separability, and exceptional classical and quantum Hamiltonians.

02

Few-body dynamics

Symmetry reduction in relative-distance and volume variables, exactly solvable models, closed chains, and choreographies.

03

Quantum confinement

Atoms and few-body systems under hard-wall confinement and magnetic fields, using variational, perturbative, algebraic, and information-theoretic methods.

04

Semiclassical physics

Instantons, fluctons, multiloop corrections, exact WKB conditions, and diagrammatic descriptions of nonperturbative quantum phenomena.

05

Data-driven dynamics

Sparse identification, physics-informed neural networks, chaos diagnostics, and information theory for equation and invariant discovery.

Current program

Symmetry-led physics with modern computation

A unified agenda connecting exact analytical structure with numerical exploration, machine learning, and student-led research.

03 · Students & mentoring

Research grows
through people.

Supervision is organized around substantive research problems and, whenever scientifically warranted, publication. Students work across mathematical physics, quantum systems, nonlinear dynamics, information theory, and machine learning.

Adrián M. Escobar Ruiz during academic work and mentoring

Current graduate and postdoctoral researchers

Ph.D. · 2024–present

Angelina Nohemí Mendoza Tavera

Hydrogen in magnetic fields and spatial confinement; neural-network interpolation and phase-space diagnostics. Five peer-reviewed papers.

Ph.D. · 2026–present

Marco Antonio Zurita Martínez

Information-theoretic and numerical characterization of the Contopoulos potential and atom–light systems. Four peer-reviewed papers.

Ph.D. · 2026–present

Leonardo Saúl Rubio Vázquez

Machine learning for the discovery of invariants and equation reconstruction in dynamical systems.

M.Sc. · 2025–present

Ana Lilia Salgado Santana

Poincaré maps, Lyapunov exponents, and AI-based equation reconstruction for a perturbed TTW chaotic system.

Postdoctoral · 2022–2026

Rafael Leonardo Azuaje Hidalgo

Canonoid transformations in classical and quantum mechanics. Principal academic adviser.

Master’s research · 2024–2025

Carlos Iván Ávila Joachín

Transport in graphene, TSPF, BIESQ, and the quantum Hall effect.

Completed M.Sc. degrees as principal adviser

2026 · Two papers

Paini Miguel Juárez Flores

Physics-Informed Neural Networks for Hamiltonian Systems: Modeling, Analysis, and Applications.

2025

Marco Antonio Zurita Martínez

Classical Closed Chain of Three Bodies with Harmonic-Type Interactions in One and Two Dimensions.

2024 · Three papers

Fidel Montoya Molina

Analysis of Dynamical Systems Using Machine-Learning Tools.

Undergraduate research and terminal projects

2025–2026. Miguel Eduardo Gómez Quintanar — planar three-charge Coulomb system in a magnetic field, chaos diagnostics, and data-driven reconstruction; Felipe Gael García Jiménez — Terminal Projects I and II; Ángel Omar García Hernández — Terminal Project I; Julio César Gordiano Hernández — Hamiltonian symmetries and polynomial algebras.

2024. Julio César Gordiano Hernández — symmetries and canonoid transformations in classical Hamiltonian mechanics; Mani Zeltzin Mariana Acosta Roque — confined hydrogen in a magnetic field; Miguel Ángel Cortés Turrubiate — confined two- and three-dimensional helium systems.

2022–2023. Sara Nayeli Vélez Montesinos — neural-network classification of visual evoked potentials; Luis Alberto Sánchez Batres — planar three-body harmonic oscillator; Emanuel Núñez Cervantes — higher-order superintegrable systems; Estefanía Cernas Valentín — supersymmetry in quasi-exactly solvable systems; Luis Fernando Rivera Padilla — WKB tunneling and variational methods; Paini Miguel Juárez Flores — generalized Hénon–Heiles system; César Alberto Torres Solís — Sitnikov-type problem.

2021–2022. Baltasar Bassol Rojas — Feynman diagrams in quantum mechanics; Fidel Montoya Molina — quantum three-body oscillator; Ricardo Misael Caballero Cárdenas — path integrals and quasi-exact solvability; Nancy Martínez Durán — planar superintegrable Hamiltonians; Jesús Gabriel Carrillo Toledo — anharmonic-oscillator Feynman diagrams; José Manuel Pérez Minguela — two-dimensional helium in a magnetic field; Julieta Saraí Águila Villicaña — quantum models of information processing in the brain.

Social service, conference participation, and group tutoring

Social service. Supervised students include Irlanda de Lourdes Palma y Meza Montoya, Nancy Martínez Durán, Ricardo Misael Caballero Cárdenas, Fidel Montoya Molina, César Alberto Torres Solís, Jorge Iván Chávez Núñez, Alma Victoria de Jesús Moreno, and Jimena Denisse Hansen García. Irlanda’s work led to a peer-reviewed SIGMA article in 2022.

Student presentations. Supervised students have presented oral contributions and posters at the Mexican Physical Society’s National Physics Congress and specialized workshops, including work on confined atoms, PINNs, sparse invariant discovery, quantum information, graphene transport, and gravitational fragmentation.

Group tutoring. UAM-I tutor for 85 undergraduate students across three recorded cohorts, with additional Physics B.Sc. tutoring assignments in 2024–2025.

04 · Publications

Complete publication
record.

Sixty-four peer-reviewed publications, grouped by year. Each DOI opens the definitive journal record. Updated 20 August 2026.

2026 · Publications 60–64
  • 64. A. N. Mendoza Tavera, A. M. Escobar Ruiz, and R. P. Sagar, “Wigner–Husimi phase-space structure of quasi-exactly solvable sextic potential,” Journal of Physics A: Mathematical and Theoretical, 59, 265304 (2026). DOI ↗
  • 63. A. M. Escobar-Ruiz, R. Azuaje, and J. C. Gordiano, “Two-dimensional classical superintegrable systems: polynomial algebra of integrals,” Journal of Physics A: Mathematical and Theoretical, 59, 245204 (2026). DOI ↗
  • 62. M. A. Quiroz-Juárez, M. A. Zurita, H. Olivares-Pilón, and A. M. Escobar Ruiz, “Quantum restoration of confinement in the classically chaotic x²y² Yang–Mills Hamiltonian,” Communications in Nonlinear Science and Numerical Simulation, 160, 109922 (2026). DOI ↗
  • 61. A. M. Escobar Ruiz, A. N. Mendoza Tavera, R. P. Sagar, C. Mateo Frausto-Avila, and M. A. Quiroz-Juárez, “Wigner-entropy and negativity signatures of tunneling in a sextic double well,” The European Physical Journal Plus, 141, 240 (2026). DOI ↗
  • 60. M. E. Gómez Quintanar and A. M. Escobar-Ruiz, “Two-Center Repulsive Coulomb System in a Constant Magnetic Field,” Atoms, 14, 11 (2026). DOI ↗
2025 · Publications 49–59
  • 59. A. M. Escobar Ruiz, L. Jiménez-Lara, J. Llibre, and M. A. Zurita, “Two-center problem with harmonic-like interactions: periodic orbits and non-integrability,” Chaos, 35, 123104 (2025). DOI ↗
  • 58. Y. A. Álvarez-Ballesteros, M. A. Quiroz-Juárez, J. L. Del-Río-Correa, and A. M. Escobar-Ruiz, “Exploring the multifractal behavior of the human genome T2T-CHM13v2.0: graphical representations and cytogenetics,” Computers in Biology and Medicine, 197, 110977 (2025). DOI ↗
  • 57. M. F. Castro-Colin, E. G. G. de Paz, and A. M. Escobar-Ruiz, “Enhancing Perceptron Learning Through Bayesian Optimisation and Cross-Validation,” in Pattern Recognition, Lecture Notes in Computer Science 15715, 348–357 (2025). DOI ↗
  • 56. M. Acosta Roque, H. Olivares-Pilón, A. N. Mendoza Tavera, and A. M. Escobar-Ruiz, “Spherically confined hydrogen atom: variational cut-off factor,” Suplemento de la Revista Mexicana de Física, 6, 011311 (2025). DOI ↗
  • 55. A. N. Mendoza-Tavera, H. Olivares-Pilón, M. Rodríguez-Arcos, and A. M. Escobar-Ruiz, “Cylindrically Confined Hydrogen Atom in Magnetic Field: Variational Cut-Off Factor,” Few-Body Systems, 66, 31 (2025). DOI ↗
  • 54. A. Contreras-Astorga and A. M. Escobar-Ruiz, “The QES sextic and Morse potentials: exact WKB condition and supersymmetry,” Journal of Physics: Conference Series, 2986, 012010 (2025). DOI ↗
  • 53. A. M. Escobar-Ruiz, M. A. Zurita, Y. A. Álvarez-Ballesteros, J. L. Del-Río-Correa, and M. A. Quiroz-Juárez, “The classical and quantum two-center harmonic-like problem,” Chaos, Solitons & Fractals, 199, 116771 (2025). DOI ↗
  • 52. A. M. Escobar-Ruiz and M. Fernandez-Guasti, “On the four-body limaçon choreography: maximal superintegrability and choreographic fragmentation,” Celestial Mechanics and Dynamical Astronomy, 137, 24 (2025). DOI ↗
  • 51. A. N. Mendoza Tavera, A. M. Escobar Ruiz, and R. P. Sagar, “Entropic Characterization of Tunneling and State Pairing in a Quasi-exactly Solvable Sextic Potential,” International Journal of Theoretical Physics, 64, 322 (2025). DOI ↗
  • 50. R. Azuaje and A. M. Escobar-Ruiz, “Canonical transformations: from the coordinate based approach to the geometric one,” Physica Scripta, 100, 065228 (2025). DOI ↗
  • 49. R. Azuaje and A. M. Escobar-Ruiz, “On particular integrability for (co)symplectic and (co)contact Hamiltonian systems,” Journal of Physics A: Mathematical and Theoretical, 58, 045201 (2025). DOI ↗
2024 · Publications 45–48
  • 48. A. M. Escobar-Ruiz, L. Jiménez-Lara, P. M. Juárez-Flores, F. Montoya-Molina, J. Moreno-Sáenz, and M. A. Quiroz-Juárez, “Data-driven reconstruction of chaotic dynamical equations: the Hénon–Heiles type system,” Chaos, Solitons & Fractals, 184, 115025 (2024). DOI ↗
  • 47. M. A. Zurita Martínez, P. M. Juárez Flores, and A. M. Escobar-Ruiz, “The Hénon–Heiles type system: Lyapunov exponent and physics-informed neural networks,” Journal of Physics: Conference Series, 2912, 012030 (2024). DOI ↗
  • 46. R. Azuaje and A. M. Escobar-Ruiz, “On particular integrability in classical mechanics,” Journal of Physics A: Mathematical and Theoretical, 57, 105202 (2024). DOI ↗
  • 45. A. Contreras-Astorga, A. M. Escobar-Ruiz, and R. Linares, “The SUSY partners of the QES sextic potential revisited,” Physica Scripta, 99, 025223 (2024). DOI ↗
2023 · Publications 40–44
  • 44. R. Azuaje and A. M. Escobar-Ruiz, “Canonical and canonoid transformations for Hamiltonian systems on (co)symplectic and (co)contact manifolds,” Journal of Mathematical Physics, 64, 033501 (2023). DOI ↗
  • 43. H. Olivares-Pilón, A. M. Escobar-Ruiz, and F. Montoya Molina, “Three-body harmonic molecule,” Journal of Physics B: Atomic, Molecular and Optical Physics, 56, 075002 (2023). DOI ↗
  • 42. H. Olivares-Pilón, A. M. Escobar-Ruiz, M. A. Quiroz-Juárez, and N. Aquino, “Confined hydrogen atom: endohedrals H@C36 and H@C60,” Machine Learning: Science and Technology, 4, 015024 (2023). DOI ↗
  • 41. A. V. Turbiner and A. M. Escobar-Ruiz, “Two-body Coulomb problem and hidden g(2) algebra: superintegrability and cubic polynomial algebra,” Journal of Physics: Conference Series, 2667, 012075 (2023). DOI ↗
  • 40. A. V. Turbiner and A. M. Escobar-Ruiz, “Two-body Coulomb problem and g(2) algebra (once again about the hydrogen atom),” Physics Letters A, 468, 128738 (2023). DOI ↗
2022 · Publications 35–39
  • 39. I. Yurdusen, A. M. Escobar-Ruiz, and I. P. Meza Montoya, “Doubly Exotic Nth-Order Superintegrable Classical Systems Separating in Cartesian Coordinates,” SIGMA, 18, 039 (2022). DOI ↗
  • 38. A. M. Escobar-Ruiz and A. V. Turbiner, “Classical n-body system in volume variables II: four-body case,” International Journal of Modern Physics A, 37, 2250209 (2022). DOI ↗
  • 37. A. M. Escobar-Ruiz, M. A. Quiroz-Juárez, J. L. Del Río-Correa, and N. Aquino, “Classical harmonic three-body system: an experimental electronic realization,” Scientific Reports, 12, 13346 (2022). DOI ↗
  • 36. C. A. Escobar, A. Martín-Ruiz, A. M. Escobar-Ruiz, and R. Linares, “Testing the scalar sector of the Standard-Model Extension with neutron gravity experiments,” The European Physical Journal Plus, 137, 1186 (2022). DOI ↗
  • 35. A. M. Escobar-Ruiz and F. Montoya, “Generalized three-body oscillator system: ground state,” Acta Polytechnica, 62, 50–55 (2022). DOI ↗
2021 · Publications 29–34
  • 34. A. M. Escobar-Ruiz, R. Linares, A. V. Turbiner, and W. Miller Jr., “Classical n-body system in geometrical and volume variables I: three-body case,” International Journal of Modern Physics A, 36, 2150140 (2021). DOI ↗
  • 33. A. M. Escobar-Ruiz, W. Miller Jr., and A. V. Turbiner, “Four-body (an)harmonic oscillator in d-dimensional space: S-states, (quasi)-exact-solvability, hidden algebra sl(7),” Journal of Mathematical Physics, 62, 072103 (2021). DOI ↗
  • 32. A. M. Escobar-Ruiz, H. Olivares-Pilón, N. Aquino, and S. Cruz, “Helium-like ions in d dimensions: analyticity and generalized ground-state Majorana solutions,” Journal of Physics B: Atomic, Molecular and Optical Physics, 54, 235002 (2021). DOI ↗
  • 31. J. C. del Valle, A. V. Turbiner, and A. M. Escobar-Ruiz, “Two-body neutral Coulomb system in a magnetic field at rest: from hydrogen atom to positronium,” Physical Review A, 103, 032820 (2021). DOI ↗
  • 30. A. M. Escobar-Ruiz, A. Martín-Ruiz, C. A. Escobar, and R. Linares, “Scalar Casimir effect for a conducting cylinder in a Lorentz-violating background,” International Journal of Modern Physics A, 36, 2150168 (2021). DOI ↗
  • 29. A. V. Turbiner, W. Miller Jr., and A. M. Escobar-Ruiz, “From two-dimensional (super-integrable) quantum dynamics to (super-integrable) three-body dynamics,” Journal of Physics A: Mathematical and Theoretical, 54, 015204 (2021). DOI ↗
2020 · Publications 25–28
  • 28. A. M. Escobar-Ruiz, R. Linares, and P. Winternitz, “New infinite families of Nth-order superintegrable systems separating in Cartesian coordinates,” Journal of Physics A: Mathematical and Theoretical, 53, 445203 (2020). DOI ↗
  • 27. A. V. Turbiner, W. Miller Jr., and A. M. Escobar-Ruiz, “Three-body closed chain of interactive (an)harmonic oscillators and the algebra sl(4;R),” Journal of Physics A: Mathematical and Theoretical, 53, 055302 (2020). DOI ↗
  • 26. P. P. Goldstein, A. M. Grundland, and A. M. Escobar-Ruiz, “The su(2) spin-s representations via CP2s sigma models,” Journal of Physics Communications, 4, 105006 (2020). DOI ↗
  • 25. A. Martín-Ruiz, C. A. Escobar, A. M. Escobar-Ruiz, and O. J. Franca, “Lorentz-violating scalar Casimir effect for a D-dimensional sphere,” Physical Review D, 102, 015027 (2020). DOI ↗
2019 · Publications 23–24
  • 24. A. M. Escobar-Ruiz and J. C. Ndogmo, “Equivalence classes and linearization of the Riccati and Abel chains,” Journal of Mathematical Analysis and Applications, 475, 1818–1830 (2019). DOI ↗
  • 23. W. Miller Jr., A. V. Turbiner, and A. M. Escobar-Ruiz, “Four-body problem in d-dimensional space: ground state, (quasi)-exact-solvability. IV,” Journal of Mathematical Physics, 60, 062101 (2019). DOI ↗
2018 · Publications 18–22
  • 22. A. M. Escobar-Ruiz, P. Winternitz, and I. Yurdusen, “General Nth-order superintegrable systems separating in polar coordinates,” Journal of Physics A: Mathematical and Theoretical, 51, 40LT01 (2018). DOI ↗
  • 21. A. M. Escobar-Ruiz, J. C. López Vieyra, P. Winternitz, and I. Yurdusen, “Fourth-order superintegrable systems separating in polar coordinates. II. Standard potentials,” Journal of Physics A: Mathematical and Theoretical, 51, 455202 (2018). DOI ↗
  • 20. W. Miller Jr., A. V. Turbiner, and A. M. Escobar-Ruiz, “The quantum n-body problem in dimension d ≥ n − 1: ground state,” Journal of Physics A: Mathematical and Theoretical, 51, 205201 (2018). DOI ↗
  • 19. A. V. Turbiner, W. Miller Jr., and A. M. Escobar-Ruiz, “Three-body problem in d-dimensional space: ground state, (quasi)-exact-solvability,” Journal of Mathematical Physics, 59, 022108 (2018). DOI ↗
  • 18. A. M. Escobar-Ruiz and C. A. Escobar, “Three charges on a plane in a magnetic field: special trajectories,” Journal of Mathematical Physics, 59, 102901 (2018). DOI ↗
2017 · Publications 11–17
  • 17. A. M. Escobar-Ruiz, J. C. López Vieyra, and P. Winternitz, “Fourth-order superintegrable systems separating in polar coordinates. I. Exotic potentials,” Journal of Physics A: Mathematical and Theoretical, 50, 495206 (2017). DOI ↗
  • 16. A. M. Escobar-Ruiz, W. Miller Jr., and E. Subag, “Contractions of degenerate quadratic algebras, abstract and geometric,” SIGMA, 13, 099 (2017). DOI ↗
  • 15. A. M. Escobar-Ruiz, E. G. Kalnins, and W. Miller Jr., “Separation equations for 2D superintegrable systems on constant-curvature spaces,” Journal of Physics A: Mathematical and Theoretical, 50, 385202 (2017). DOI ↗
  • 14. A. M. Escobar-Ruiz, E. G. Kalnins, W. Miller Jr., and E. Subag, “Bôcher and abstract contractions of second-order quadratic algebras,” SIGMA, 13, 013 (2017). DOI ↗
  • 13. A. M. Escobar-Ruiz and W. Miller Jr., “Toward a classification of semidegenerate 3D superintegrable systems,” Journal of Physics A: Mathematical and Theoretical, 50, 095203 (2017). DOI ↗
  • 12. A. V. Turbiner, W. Miller Jr., and A. M. Escobar-Ruiz, “Three-body problem in 3D space: ground state, (quasi)-exact-solvability,” Journal of Physics A: Mathematical and Theoretical, 50, 215201 (2017). DOI ↗
  • 11. A. M. Escobar-Ruiz, E. Shuryak, and A. V. Turbiner, “Fluctuations in quantum mechanics and field theories from a new version of semiclassical theory. II,” Physical Review D, 96, 045005 (2017). DOI ↗
2016 · Publications 9–10
  • 10. A. M. Escobar-Ruiz and W. Miller Jr., “Conformal Laplace superintegrable systems in 2D: polynomial invariant subspaces,” Journal of Physics A: Mathematical and Theoretical, 49, 305202 (2016). DOI ↗
  • 9. A. M. Escobar-Ruiz, E. Shuryak, and A. V. Turbiner, “Quantum and thermal fluctuations in quantum mechanics and field theories from a new version of semiclassical theory,” Physical Review D, 93, 105039 (2016). DOI ↗
2015 · Publications 6–8
  • 8. A. M. Escobar-Ruiz, E. Shuryak, and A. V. Turbiner, “Three-loop correction to the instanton density. II. The sine–Gordon potential,” Physical Review D, 92, 025047 (2015). DOI ↗
  • 7. A. M. Escobar-Ruiz, E. Shuryak, and A. V. Turbiner, “Three-loop correction to the instanton density. I. The quartic double-well potential,” Physical Review D, 92, 025046 (2015). DOI ↗
  • 6. A. M. Escobar-Ruiz and A. V. Turbiner, “Two charges on a plane in a magnetic field. II. Moving neutral quantum system across magnetic field,” Annals of Physics, 359, 405–418 (2015). DOI ↗
2014 · Publications 4–5
  • 5. A. M. Escobar-Ruiz, “Two charges on a plane in a magnetic field. III. He+ ion,” Annals of Physics, 351, 714–726 (2014). DOI ↗
  • 4. A. M. Escobar-Ruiz and A. V. Turbiner, “Two charges on a plane in a magnetic field. I. ‘Quasi-equal’ charges and neutral quantum system at rest cases,” Annals of Physics, 340, 37–59 (2014). DOI ↗
2013 · Publications 2–3
  • 3. A. V. Turbiner and A. M. Escobar-Ruiz, “Two charges on a plane in a magnetic field: hidden algebra, (particular) integrability, polynomial eigenfunctions,” Journal of Physics A: Mathematical and Theoretical, 46, 295204 (2013). DOI ↗
  • 2. A. M. Escobar-Ruiz and A. V. Turbiner, “Two charges on a plane in a magnetic field: special trajectories,” Journal of Mathematical Physics, 54, 022901 (2013). DOI ↗
2011 · Publication 1
  • 1. A. M. Escobar-Ruiz, “Electrostatic models of charged hydrogenic chains in a strong magnetic field,” Revista Mexicana de Física, 57, 193–203 (2011). Journal record; no DOI assigned.

Public preprints and manuscripts under review

  • C. A. Escobar Ruiz, H. Olivares-Pilón, and A. M. Escobar-Ruiz, “Nodal algebraic curves and entropy diagnostics in degenerate two-dimensional harmonic-oscillator shells.” Under revision at Physica Scripta. arXiv ↗
  • A. M. Escobar-Ruiz and M. Fernandez-Guasti, “Superintegrability and choreographic obstructions in dihedral n-body Hamiltonian systems.” arXiv ↗
  • A. M. Escobar Ruiz, M. E. Gómez Quintanar, L. Jiménez-Lara, and J. Llibre, “Singular barriers and quartic integrability breaking in the TTW system.” arXiv ↗

05 · Seminars & academic community

Ideas move through
scientific communities.

I organize seminars, schools, and workshops that connect mathematical physics, gravitation, quantum technologies, artificial intelligence, and dynamical systems across UAM-I and partner institutions.

Adrián M. Escobar Ruiz preparing academic work

2023–2024

Gravitation & Mathematical Physics Seminar

Joint seminar and colloquium connecting UAM-I, CINVESTAV, and UMSNH.

2025

Interdepartmental Physics–Chemistry Seminar

A UAM-I forum designed to create exchange across disciplinary boundaries.

2024–2026

Manuel Sandoval Vallarta Institute

Coordination and public scientific programming, including outreach on special relativity.

Schools, workshops, and recent invited seminars
  • Organizer, Workshop School on Information Science and Quantum Technologies, 2025.
  • Organizer, Workshop School on Artificial Intelligence and Dynamical Systems, 2025.
  • Organizer, three-day workshop Science, Physics, and Mathematics, delivered by Jaume Llibre, 2025.
  • Invited talks in 2025 at UAM-I, CINVESTAV, CFATA–UNAM, and the UAM-I Department of Mathematics on confinement, quantum information, artificial intelligence, and superintegrability.
  • International conference contributions at FDIS, ISQS, QTS, the International Congress on Mathematical Physics, Group-Theoretical Methods in Physics, and other specialized meetings.

06 · Contact

Let’s discuss
physics.

Research collaborations, seminars, graduate supervision, and scientific initiatives.

admau@xanum.uam.mx ↗

Department of Physics · Area of Mechanics
Building T · Office T-337
Universidad Autónoma Metropolitana–Iztapalapa
Mexico City 09310, Mexico

ORCID ↗    ResearchGate ↗    UAM profile ↗


© 2026 Adrián M. Escobar Ruiz