Change search
CiteExportLink to record
Permanent link

Direct link
Cite
Citation style
  • apa
  • ieee
  • modern-language-association-8th-edition
  • vancouver
  • Other style
More styles
Language
  • de-DE
  • en-GB
  • en-US
  • fi-FI
  • nn-NO
  • nn-NB
  • sv-SE
  • Other locale
More languages
Output format
  • html
  • text
  • asciidoc
  • rtf
Quantifying the balance between dissociation and radiative cooling in interstellar PAHs
Stockholm University, Faculty of Science, Department of Physics.ORCID iD: 0000-0002-9489-4580
2026 (English)Licentiate thesis, comprehensive summary (Other academic)
Abstract [en]

Polycyclic aromatic hydrocarbons (PAH) constitute an ubiquitous class of organic molecules in the interstellar medium. In recent years, they have also been detected in cold molecular clouds through radio astronomical surveys, while observations from the James Webb Space Telescope have enabled their spatial distributions and abundances to be characterized in unprecedented detail. Despite this, the stability of PAHs under astrophysical conditions remains poorly constrained. For instance, astrochemical models that simulate the abundances of aliphatic hydrocarbons in molecular clouds underestimate PAH abundances by several orders of magnitude. The main limitation in these models is that they are built on theoretical assumptions that lack experimental verification. 

This licentiate thesis presents laboratory studies of indene, indenyl, and 2-cyanoindene monocations, PAHs whose neutral counterparts have been detected or are suspected to be present in the molecular cloud, TMC-1. The balance between dissociation and radiative cooling was investigated through absolute dissociation rate measurements performed using a cryogenic ion beam storage ring at the DESIREE facility. For cyanoindene, complementary dissociative photoionisation experiments were carried out at the DESIRS beamline of the SOLEIL synchrotron. The measured absolute dissociation rates and breakdown curves were interpreted using a statistical framework based on microcanonical rate coefficients for all relevant unimolecular processes. The results provide quantitative constraints on PAH stability and are discussed in the context of their implications for astrochemical modelling. In particular, the results demonstrate that radiative cooling plays a decisive role under astrophysically relevant excitation conditions, significantly reshaping the balance between energy loss and fragmentation, challenging the current simplified treatments of PAH stability.

Place, publisher, year, edition, pages
Stockholm: Department of Physics, Stockholm University , 2026.
Keywords [en]
Polycyclic aromatic hydrocarbons, astrochemistry, radiative cooling, DESIREE
National Category
Atom and Molecular Physics and Optics Physical Sciences
Research subject
Physics
Identifiers
URN: urn:nbn:se:su:diva-253086OAI: oai:DiVA.org:su-253086DiVA, id: diva2:2043090
Presentation
2026-03-27, FB55, Albanova universitetscentrum, Roslagstullbacken 21, Stockholm, Stockholm, 13:00 (English)
Opponent
Supervisors
Available from: 2026-03-04 Created: 2026-03-03 Last updated: 2026-03-04Bibliographically approved
List of papers
1. Dissociation and radiative stabilization of the indene cation: The nature of the C-H bond and astrochemical implications
Open this publication in new window or tab >>Dissociation and radiative stabilization of the indene cation: The nature of the C-H bond and astrochemical implications
Show others...
2025 (English)In: Journal of Chemical Physics, ISSN 0021-9606, E-ISSN 1089-7690, Vol. 162, no 18, article id 184306Article in journal (Refereed) Published
Abstract [en]

Indene (C9H8) is the only polycyclic pure hydrocarbon identified in the interstellar medium to date, with an observed abundance orders of magnitude higher than predicted by astrochemical models. The dissociation and radiative stabilization of vibrationally hot indene cations are investigated by measuring the time-dependent neutral particle emission rate from ions in a cryogenic ion-beam storage ring for up to 100 ms. Time-resolved measurements of the kinetic energy released upon hydrogen atom loss from C 9 H 8 + , analyzed in view of a model of tunneling through a potential energy barrier, provide the dissociation rate coefficient. Master equation simulations of the dissociation in competition with vibrational and electronic radiative cooling reproduce the measured dissociation rate. We find that radiative stabilization arrests one of the main C9H8 destruction channels included in astrochemical models, helping to rationalize its high observed abundance.

National Category
Atom and Molecular Physics and Optics
Identifiers
urn:nbn:se:su:diva-243900 (URN)10.1063/5.0257874 (DOI)001489030000003 ()40358055 (PubMedID)2-s2.0-105005385583 (Scopus ID)
Available from: 2025-06-09 Created: 2025-06-09 Last updated: 2026-03-03Bibliographically approved
2. Radiative Stabilization of the Indenyl Cation: Recurrent Fluorescence in a Closed-Shell Polycyclic Aromatic Hydrocarbon
Open this publication in new window or tab >>Radiative Stabilization of the Indenyl Cation: Recurrent Fluorescence in a Closed-Shell Polycyclic Aromatic Hydrocarbon
Show others...
2025 (English)In: Physical Review Letters, ISSN 0031-9007, E-ISSN 1079-7114, Vol. 134, no 22, article id 228002Article in journal (Refereed) Published
Abstract [en]

Several small polycyclic aromatic hydrocarbons (PAHs) with closed-shell electronic structure have been identified in the cold, dark environment Taurus Molecular Cloud 1. We measure efficient radiative cooling through the combination of recurrent fluorescence (RF) and IR emission in the closed-shell indenyl cation (C9H7+), finding good agreement with a master equation model including molecular dynamics trajectories to describe internal-energy-dependent properties for RF. We find that C9H7+ formed with up to Ec=5.85 eV vibrational energy, which is ≈2 eV above the dissociation threshold, radiatively cool rather than dissociate. The efficient radiative stabilization dynamics are likely common to other closed-shell PAHs present in space, contributing to their abundance.

National Category
Fusion, Plasma and Space Physics
Identifiers
urn:nbn:se:su:diva-245946 (URN)10.1103/PhysRevLett.134.228002 (DOI)001508634700003 ()40548801 (PubMedID)2-s2.0-105007831273 (Scopus ID)
Available from: 2025-08-28 Created: 2025-08-28 Last updated: 2026-03-03Bibliographically approved
3. Dissociation and Cooling Dynamics of 2-cyanoindene Monocations: Survival of Small PAHs in Harsh Interstellar Radiation Fields
Open this publication in new window or tab >>Dissociation and Cooling Dynamics of 2-cyanoindene Monocations: Survival of Small PAHs in Harsh Interstellar Radiation Fields
Show others...
2026 (English)In: Astrophysical Journal, ISSN 0004-637X, E-ISSN 1538-4357, Vol. 997, no 1, article id 49Article in journal (Refereed) Published
Abstract [en]

The molecule, 2-cyanoindene, C10H7N (2CNI) is the only cyanosubstituted polycyclic aromatic hydrocarbon (PAH) detected in space, for which the hydrocarbon counterpart, indene, has also been observed in the same astrochemical environment—the molecular cloud TMC-1. In this study, based on experiments in two different laboratories, the collision and radiation-driven dissociation and cooling dynamics of the 2-cyanoindene monocations are investigated using one of the electrostatic ion-beam storage rings of the DESIREE facility, and the DESIRS beamline at the SOLEIL synchrotron radiation facility. The storage ring experiments quantify the balance between fragmentation and radiative cooling of the stored cations, while the synchrotron experiments characterize dissociation channels from the vacuum ultraviolet-induced dissociative photoionization of the neutrals. Recurrent fluorescence is shown to play an important role in the radiative stabilization of 2CNI+. The results from both sets of experiments are combined to obtain a self-consistent set of microcanonical rate coefficients for dissociation and radiative cooling that completely describe the near-dissociation threshold dynamics of 2CNI+ across the microseconds-seconds time range. This timescale is suitable for incorporation into astrochemical models of PAH growth and destruction lifecycles. This study extends its findings to different astrochemical environments by simulating the extent of fragmentation and the cascade emission spectra of 2CNI+ under varying interstellar radiation fields. These results indicate that radiative cooling enhances the resilience of 2-cyanoindene to harsh radiation conditions, suggesting that small cyano-PAHs may survive longer than previously assumed in a wider range of astrochemical environments, extending beyond cold, dark molecular clouds.

Keywords
Laboratory astrophysics, Polycyclic aromatic hydrocarbons
National Category
Atom and Molecular Physics and Optics
Identifiers
urn:nbn:se:su:diva-252966 (URN)10.3847/1538-4357/ae1581 (DOI)001662361300001 ()2-s2.0-105033914663 (Scopus ID)
Funder
Swedish Research Council, 2018-04092Swedish Research Council, 2023-03833Swedish Research Council, 2020-03437Knut and Alice Wallenberg Foundation, 2018.0028Olle Engkvists stiftelse, 200-575The Swedish Foundation for International Cooperation in Research and Higher Education (STINT), PT2017-7328Swedish Research Council, 2021-00155Swedish Research Council, 2023-00170
Available from: 2026-03-02 Created: 2026-03-02 Last updated: 2026-04-20Bibliographically approved

Open Access in DiVA

Subramani_Lic(12959 kB)496 downloads
File information
File name FULLTEXT01.pdfFile size 12959 kBChecksum SHA-512
ffb9b6742033ebc9563429d3eacc9c94d0f7ce51e5c01622571f2906f6e193240f58eb6cf3f32e5c81952254ac3c5c30867764dd721d299684e18bd831d40521
Type fulltextMimetype application/pdf

Authority records

Subramani, Arun

Search in DiVA

By author/editor
Subramani, Arun
By organisation
Department of Physics
Atom and Molecular Physics and OpticsPhysical Sciences

Search outside of DiVA

GoogleGoogle Scholar
The number of downloads is the sum of all downloads of full texts. It may include eg previous versions that are now no longer available

urn-nbn

Altmetric score

urn-nbn
Total: 4729 hits
CiteExportLink to record
Permanent link

Direct link
Cite
Citation style
  • apa
  • ieee
  • modern-language-association-8th-edition
  • vancouver
  • Other style
More styles
Language
  • de-DE
  • en-GB
  • en-US
  • fi-FI
  • nn-NO
  • nn-NB
  • sv-SE
  • Other locale
More languages
Output format
  • html
  • text
  • asciidoc
  • rtf