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Overview

Herma M. Cuppen is affiliated with Radboud University in the Netherlands, where their research focuses on various aspects of physics, chemistry, and earth and planetary sciences. Their work spans multiple subfields including astronomy and astrophysics, atomic and molecular physics, atmospheric science, spectroscopy, and physical and theoretical chemistry.

The scientist has contributed extensively to the study of astrophysics and star formation, advanced chemical physics, molecular spectroscopy and structure, atmospheric ozone and climate, astro and planetary science, atmospheric chemistry and aerosols, and crystallography and molecular interactions.

Herma M. Cuppen's frequent publication venues include:

  • arXiv (Cornell University)
  • Astronomy and Astrophysics
  • Nature Astronomy
  • ACS Earth and Space Chemistry
  • The Journal of Physical Chemistry A

Frequent collaborators in their research include:

  • S. Ioppolo
  • Jennifer A. Noble
  • H. Linnartz
  • Thanja Lamberts
  • Britta Redlich

Representative recent papers authored or co-authored by Herma M. Cuppen are:

  • "An Ice Age JWST inventory of dense molecular cloud ices," 2023, Nature Astronomy
  • "Thermal desorption of interstellar ices: a review on the controlling parameters and their implications from snowlines to chemical complexity," 2022, arXiv (Cornell University)
  • "A non-energetic mechanism for glycine formation in the interstellar medium," 2020, Nature Astronomy
  • "Formation of COMs through CO hydrogenation on interstellar grains," 2020, Springer Link (Chiba Institute of Technology)
  • "On the mechanism of solid-state phase transitions in molecular crystals - the role of cooperative motion in (quasi)racemic linear amino acids," 2020, IUCrJ

The diversity of Herma M. Cuppen's research addresses fundamental questions in molecular and solid-state physics within astrophysical contexts as well as atmospheric phenomena. Their work on molecular clouds, interstellar ices, and chemical formation pathways contributes to understanding the chemical complexity of the interstellar medium and underlying physical processes in star formation regions.

Throughout their career, Herma M. Cuppen has integrated experimental and theoretical approaches within the domains of molecular spectroscopy, chemical physics, and atmospheric science, contributing to knowledge that intersects multiple disciplines related to space and planetary science.

Best Publications

  • Report on the sixth blind test of organic crystal-structure prediction methods

    Anthony M. Reilly;Richard I. Cooper;Claire S. Adjiman;Saswata Bhattacharya

  • Hydrogenation reactions in interstellar CO ice analogues A combined experimental/theoretical approach

    G. W. Fuchs;H. M. Cuppen;S. Ioppolo;C. Romanzin

  • Simulation of the Formation and Morphology of Ice Mantles on Interstellar Grains

    H. M. Cuppen;H. M. Cuppen;Eric Herbst

  • Microscopic simulation of methanol and formaldehyde ice formation in cold dense cores

    H. M. Cuppen;E. F. Van Dishoeck;E. Herbst;A. G. G. M. Tielens

  • LABORATORY EVIDENCE FOR EFFICIENT WATER FORMATION IN INTERSTELLAR ICES

    S. Ioppolo;H. M. Cuppen;C. Romanzin;E. F. van Dishoeck

  • Reaction Networks for Interstellar Chemical Modelling: Improvements and Challenges

    Valentine Wakelam;Valentine Wakelam;I. W. M. Smith;E. Herbst;J. Troe;J. Troe

  • Grain Surface Models and Data for Astrochemistry

    H. M. Cuppen;C. Walsh;C. Walsh;T. Lamberts;T. Lamberts;D. Semenov

  • Experimental evidence for glycolaldehyde and ethylene glycol formation by surface hydrogenation of CO molecules under dense molecular cloud conditions

    G. Fedoseev;H. M. Cuppen;S. Ioppolo;T. Lamberts;T. Lamberts

  • Water formation at low temperatures by surface O2 hydrogenation II: the reaction network

    H. M. Cuppen;S. Ioppolo;C. Romanzin;H. Linnartz

  • Surface formation of CO2 ice at low temperatures

    S. Ioppolo;Y. van Boheemen;H. M. Cuppen;E. F. van Dishoeck

  • Sensitivity Analysis of Grain Surface Chemistry to Binding Energies of Ice Species

    E.M. Penteado;C. Walsh;C. Walsh;H.M. Cuppen

  • Laboratory H2O:CO2 ice desorption data: entrapment dependencies and its parameterization with an extended three-phase model

    E.C. Fayolle;K.I. Oberg;H.M. Cuppen;R. Visser

  • Continuous-time random-walk simulation of H2 formation on interstellar grains

    Q. Chang;H. M. Cuppen;E. Herbst

  • Quantification of segregation dynamics in ice mixtures

    Karin I. Öberg;Edith C. Fayolle;Herma M. Cuppen;Ewine F. van Dishoeck

  • Gas-grain chemistry in cold interstellar cloud cores with a microscopic Monte Carlo approach to surface chemistry

    Q. Chang;H. M. Cuppen;H. M. Cuppen;E. Herbst

  • Water formation at low temperatures by surface O2 hydrogenation I: characterization of ice penetration

    S. Ioppolo;H. M. Cuppen;C. Romanzin;E. F. van Dishoeck

  • Monte Carlo simulations of H2 formation on grains of varying surface roughness

    H. M. Cuppen;Eric Herbst

  • MONTY: Monte Carlo crystal growth on any crystal structure in any crystallographic orientation; Application to fats

    S. X. M. Boerrigter;G. P. H. Josten;J. Van De Streek;F. F. A. Hollander

  • Molecular dynamics simulations of the ice temperature dependence of water ice photodesorption

    C. Arasa;S. Andersson;H. M. Cuppen;E. F. van Dishoweck

  • Quantification of segregation dynamics in ice mixtures

    K. I. Öberg;E. C. Fayolle;H. M. Cuppen;E. F. van Dishoeck

Frequent Co-Authors

Harold Linnartz
Harold Linnartz Leiden University
E. F. van Dishoeck
E. F. van Dishoeck Leiden University
Karin I. Öberg
Karin I. Öberg Smithsonian Institution
W.J.P. van Enckevort
W.J.P. van Enckevort Radboud University
Eric Herbst
Eric Herbst University of Virginia
Valentine Wakelam
Valentine Wakelam Centre national de la recherche scientifique, CNRS
Louis J. Allamandola
Louis J. Allamandola Ames Research Center
Geert-Jan Kroes
Geert-Jan Kroes Leiden University
Hannes Jónsson
Hannes Jónsson University of Iceland
Johannes G.E. Gardeniers
Johannes G.E. Gardeniers University of Twente

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