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Información del artículo

Strong parameter hierarchy in the interstellar phosphorus chemical network

M. Fernández-Ruz, I. Jiménez-Serra, M. Castro, M. Ruiz-Bermejo, J. Aguirre

Frontiers in Astronomy and Space Sciences Vol. 12, pp. 1570525

Resumen:

Phosphorus-bearing molecules are fundamental for life on Earth, yet their astrochemical origins remain poorly understood. Their formation in the interstellar medium has been challenging to elucidate due to limited spectroscopic detections and the reliance on theoretical models that depend on numerous kinetic parameters whose values are very uncertain. Multi-parameter models often suffer from “sloppiness”, where many parameter combinations exhibit negligible influence on model outcomes, while a few dominate system behavior. In this study, we introduce the Fisher Information Spectral Reduction (FISR) algorithm, a novel and computationally efficient method to reduce the complexity of such sloppy models. Our approach exposes the strong parameter hierarchy governing these systems by identifying and eliminating parameters associated with insensitive directions in the parameter space. Applying this methodology to the phosphorus astrochemistry network, we reduce the number of reaction rate coefficients from 14 to 3, pinpointing the key reactions and kinetic parameters responsible for forming PO and PN, the main phosphorus-bearing molecules typically detected in interstellar space. The simplified model retains its predictive accuracy, offering deeper insights into the mechanisms driving phosphorus chemistry in the interstellar medium. This methodology is applicable to multi-parameter models of any kind and, specifically in astrochemistry, facilitates the development of simpler, more realistic and interpretable models to effectively guide targeted observational efforts.


Resumen divulgativo:

Un nuevo algoritmo reduce la complejidad de modelos químicos del fósforo en el espacio, identificando solo 3 reacciones clave. Esto ayuda a entender cómo se formaron las moléculas esenciales para la vida.


Palabras Clave: phosphorus astrochemistry, interstellar medium, astrobiology, dynamical systems, chemical reaction networks, kinetic parameters, complexity reduction, parameter sensitivity


Índice de impacto JCR-JIF y cuartil WoS: 2,400 - Q2 (2025)

Referencia DOI: DOI icon https://doi.org/10.3389/fspas.2025.1570525

Publicado en papel: 2025.

Publicado on-line: Julio 2025.



Cita:
M. Fernández-Ruz, I. Jiménez-Serra, M. Castro, M. Ruiz-Bermejo, J. Aguirre, "Strong parameter hierarchy in the interstellar phosphorus chemical network", Frontiers in Astronomy and Space Sciences, Vol. 12, pp. 1570525, 2025. [Online: Julio 2025] doi: 10.3389/fspas.2025.1570525

    Líneas de investigación:
  • Modelos matemáticos e Inteligencia Artificial aplicados al sector de la salud
    Grupos de investigación:
  • Instituto de Investigación Tecnológica (IIT)
  • Dinámica No Lineal
    ODS:
  • Objetivo 9: Industria, innovación e infraestructuras
  • Objetivo 13: Acción por el clima