Publications

Google Scholar Profile

Preprint articles

  1. Unified Transition Scheme for Invariant Tori Across Various Models in the Cislunar Domain
    2025
    Submitted to Communications in Nonlinear Science and Numerical Simulation
  2. A Unified Numerical Transition Scheme between Dynamical Models within Cislunar Space
    2025
    Submitted to The Journal of Astronautical Sciences

Journal articles

  1. arxiv_freq.gif
    A Frequency-Domain Differential Corrector for Quasi-Periodic Trajectory Design and Analysis
    Beom ParkKathleen C Howell, and Shaun Stewart
    Physica D: Nonlinear Phenomena, 2025
    To appear
  2. jgcd_hierarchy.gif
    Numerical Assessment of a Frequency-Based Hierarchy for the Cislunar Domain
    Journal of Guidance, Control, and Dynamics, 2025
    To appear
  3. cmda_2.gif
    A frequency-based hierarchy of dynamical models in cislunar space: leveraging periodically and quasi-periodically perturbed models
    Celestial Mechanics and Dynamical Astronomy, 2025
  4. aa_qhr4bp.gif
    Bridging Ephemeris Transition Gaps: Quasi-Periodic Extensions for the Hill Restricted Four-Body Problem in Cislunar Space
    Acta Astronautica, 2025
  5. er3bp_fold_bifurcation.gif
    Characterization of Earth-Moon L2 halo analogs in an ephemeris model using the elliptic restricted three-body problem
    Beom Park, and Kathleen C Howell
    Advances in Space Research, 2025
  6. comparePulsSolar.gif
    Assessment of dynamical models for transitioning from the Circular Restricted Three-Body Problem to an ephemeris model with applications
    Beom Park, and Kathleen C Howell
    Celestial Mechanics and Dynamical Astronomy, 2024
  7. aa_david_maaninee.gif
    A transfer trajectory framework for the exploration of Phobos and Deimos leveraging resonant orbits
    Acta Astronautica, 2022

Conference Proceedings (Work in Progress!)

    Thesis

    1. A Frequency-Based Model Hierarchy within Cislunar Space
      Beom Park
      Purdue University, 2025
      Ph.D. Dissertation
    2. masters.gif
      Low-thrust trajectory design for tours of the Martian moons
      Beom Park
      Purdue University, 2021
      M.S. Thesis