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May 31, 20260 citations

The abundance of interstellar C

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GRGaël RouilléRGR. Gredel

Key Points

  • The study aims to detect absorption lines of neutral C60 in the visible spectra of stars located toward interstellar clouds.
  • Utilized the Potsdam Echelle Polarimetric and Spectroscopic Instrument at the Large Binocular Telescope.
  • Searched for C60 absorption bands near 6070 Å, 4024 Å, and 3980 Å.
  • Measured spectra from eight background stars, including BD+31°643.
  • No detectable γ0, A0, and A1 absorption bands of C60 in the spectra.
  • Establish upper limit of (14 ± 11) × 10^12 cm−2 for C60 column density toward BD+31°643.
  • Derived upper limits of 0.8–3.8 for the C60:C60+ column density ratios.

Abstract

Context. The diffuse interstellar bands (DIBs) at 9577 and 9632 Å are attributed to electronic transitions of the C60+ fullerene ion; thus, its column density in molecular clouds may be inferred. A comparison with the column density of the neutral C60 fullerene makes it possible to determine local physical conditions in the clouds. Aims. We aim to detect absorption lines of neutral C60 in the visible spectra of stars toward interstellar clouds. Methods. We searched for the γ0, A0, and A1 absorption bands of C60 near 6070 Å, 4024 Å, and 3980 Å using the Potsdam Echelle Polarimetric and Spectroscopic Instrument at the Large Binocular Telescope. We measured spectra toward eight background stars including BD+31°643. Results. None of the γ0, A0, and A1 absorption bands of C60 were detected in our spectra. Toward BD+31°643, we determine an upper limit of (14 ± 11) × 1012 cm−2 for the column density of C60, and values in the range of 1012−1014 cm−2 toward other stars. Using literature data for C60+, we derive upper limits of 0.8–3.8 for the C60:C60+ column density ratios. Conclusions. The non-detection of the γ0 absorption band toward BD+31°643 is in conflict with a measurement employing infrared (IR) emission bands of C60. The discrepancy may indicate that free C60 molecules are not the source of the observed IR emission bands toward the star and that the IR emission arises from C60 molecules in dust grains instead. Alternatively, the oscillator strength of the γ0 band may not be well constrained from the laboratory measurements.

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Cite This Study

Rouillé et al. (2026) studied this question.

synapsesocial.com/papers/6a1bd2845783ba022b6fe0aehttps://doi.org/10.1051/0004-6361/202553682/pdf
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